[0001] This invention relates to an electronic system for transferring to surveillance stations
the audio and/or video signals originating from the rooms of a monitored dwelling,
or audio and/or video signals used for assisting persons requiring aid.
[0002] In the domestic field and in offices, electronic antitheft devices are becoming increasingly
used, these associating with an alarm siren activated automatically or manually (by
the surveillance station) a telecamera arranged to acquire images and to transfer
them to control centres, surveillance points or police stations.
[0003] Electronic tele-aid systems are also known, used to assist elderly persons living
alone, hospital patients or handicapped persons, which enable a request for aid to
be fed over a telephone line by simply pressing a pushbutton of a portable device.
Document US 5,144,661 discloses a security system where a monitored environment communicates
by telephone with a base station.
[0004] Pressing said pushbutton initiates an automatic call process repeated to a plurality
of telephone numbers until one of the called numbers replies. At that point a telephone
conversation can be held with the person requiring aid.
[0005] In the case of an antitheft device, in most cases the alarm device is connected to
the closest police station, and the telecamera positioned within the environment being
monitored takes images which can be recorded by appropriate apparatus located in safe
environments situated in the vicinity.
[0006] In this manner the recording can later be recovered and the filmed scenes viewed
with the aid of further devices.
[0007] Alternatively the images can be transmitted to a surveillance centre, from which
the scene can be directly checked on a screen. However the receiver device always
has a limited range and hence the surveillance centre must be situated in the vicinity
of the dwelling or office under supervision.
[0008] If considering an electronic tele-aid system, the request for aid is currently automatically
transferred over all the telephone lines previously programmed by the user (and hence
the call can reach a great distance from the dwelling of the person requiring assistance),
however only oral communication is possible with the user, with the drawback of not
being able to know his true physical condition by means of an objective visual examination.
[0009] An object of the present invention is therefore to provide an electronic system for
transferring audio and/or video signals which obviates the aforesaid drawbacks by
enabling the images of the rooms of a monitored dwelling to be transmitted (in the
case of break-in) to any other place equipped for viewing the images received, while
at the same time enabling the image of the person or persons requiring aid to be transmitted
if the electronic system performs the function of tele-aid.
[0010] A further object of the invention is to provide an electronic system for transferring
audio and/or video signals which is of simple and low-cost construction, without requiring
the use of complicated or costly techniques, by using standard circuits and known
electrical and electronic components.
[0011] These and further objects are attained by an electronic system for transferring audio
and/or video signals in accordance with claim 1, to which reference should be made
for brevity.
[0012] Advantageously, the electronic system of the present invention comprises at least
one electronic control unit for transmitting the audio and/or video signals, to be
installed within the monitored environment, at least one peripheral electronic device
to be installed in monitored environments close to that in which said control unit
is installed, and at least one electronic apparatus for receiving the audio and/or
video signals, to be installed at the surveillance stations.
[0013] Image transmission between the electronic control unit and the peripheral electronic
devices is by radiofrequency signals, whereas transmission between the electronic
control unit and the electronic signal reception unit is by the telephone network.
[0014] This characteristic enables the images filmed by the telecamera situated in the monitored
rooms to be transferred to remote distances.
[0015] The only requirements by the system are that connections to the telephone network
are available within the monitored dwelling or office and at the surveillance station.
[0016] In addition, the electronic control unit can feed along the used telephone line synthetic
vocal messages for communicating the alarm event to those surveillance stations not
provided with an image display screen.
[0017] In this manner the alarm event detected by the telecamera can be handled in good
time even if the telephone unit to which the electronic signal reception apparatus
is connected is occupied or unavailable, because the electronic control unit continues
to call a group of other alternative telephone numbers, to which it feeds exclusively
a vocal alarm message.
[0018] By operating on the electronic signal reception apparatus, the electronic system
also provides a "follow the user" function. If the user possessing the electronic
reception apparatus changes his address, even temporarily, he can inform the electronic
system, via said signal reception apparatus, of the new telephone number to which
the electronic reception apparatus will be connected.
[0019] When the electronic system has been installed, the user intending to change the location
of the reception apparatus operates a keyboard to insert the new telephone number,
to which he transfers a suitable command for activating the image reception function.
[0020] Automatically, by way of the telephone line, the electronic reception apparatus communicates
with the electronic control unit and program it , informing it of the new telephone
number to which subsequent alarms or calls are to be fed. At this point the user can
transfer the electronic signal reception apparatus to the new telephone number.
[0021] Finally, the fact of being able to use the telephone line for image transfer makes
the wiring of the entire system simple and the installation of the electronic control
unit and the peripheral devices economical.
[0022] The electronic reception apparatus for audio and/or video signals can be associated
with a normal television set for image display and sound diffusion, by connecting
a standard multicore cable (such as a scart cable) to provide the television set with
the signals received via the telephone line.
[0023] Alternatively, the electronic audio and/or video signal reception apparatus can be
provided with a liquid crystal screen for image display, and comprises a suitable
standard electrical interface for connection to cellular portable telephones.
[0024] Further objects and advantages of the present invention which is defined by the claims
will be apparent from the ensuing description and the accompanying drawings, which
are provided by way of non-limiting example and in which:
Figure 1 shows a first embodiment, by way of non-limiting example, of the system for
transferring audio and/or video signals according to the present invention;
Figure 2 is a block diagram of the electronic control unit used for audio and/or video
signal transmission in the embodiment of the system of the present invention shown
in Figure 1;
Figure 3 is a block diagram of a peripheral electronic device for installation in
monitored environments close to that in which the electronic control unit of Figure
2 is installed, in accordance with the embodiment of the present invention shown in
Figure 1;
Figure 4 is a block diagram of the electronic audio and/or video signal reception
apparatus in accordance with the embodiment of the present invention shown in Figure
1;
Figure 5 shows a second embodiment of the electronic system of the present invention,
shown by way of non-limiting example;
Figure 6 shows a third possible embodiment of the electronic system of the present
invention, shown by way of non-limiting example;
Figure 7 is a block diagram of the electronic audio and/or video signal reception
apparatus in accordance with the embodiment of the present invention shown in Figure
6.
[0025] With reference to said figures, the full lines connecting the blocks together in
pairs represent electrical communication lines, or digital buses, along which data,
information, commands and instructions travel in the form of electrical signals.
[0026] The dashed lines indicate connection lines used for supplying electrical energy to
the various functional blocks by the power circuits and storage batteries.
[0027] D indicates a digital signal and A represents an analog signal. The direction of
the arrows indicates the direction in which the signal flows from one block to the
other. If the line connecting the two blocks carries two arrows, one facing the first
block and the other facing the second block, this signifies that data, information,
commands and instructions are exchanged between the two blocks.
[0028] Specifically, with reference to Figure 1, S indicates overall the monitored user,
C indicates an electronic control unit connected to the electricity supply mains and
from which the audio and/or video signals are transmitted, T indicates a first telephone
line connecting the audio and/or video signals between the electronic control unit
C and an electronic reception apparatus R for said transmitted audio and/or video
signals, which is connected to the supply mains and is installed at a surveillance
station U.
[0029] With reference to Figure 2, the electronic control unit, indicated overall by C,
comprises:
- a telecamera TC, or a device for acquiring images and converting them into electrical
signals;
- a passive infrared sensor SC, which activates image acquisition simultaneously with
the detection of a moving human body in the monitored room;
- a lighting device RC for the monitored region (of visible or infrared light. For example,
a group of infrared LEDs or an infrared electromagnetic radiation lamp can be used),
which makes image acquisition possible even when there is no external lighting in
the environment;
- an electronic interface circuit IC and a modem MC (modulator-demodulator device) for
connection to the switched telephone network;
- a radio receiver-transmitter DC for acquiring images memorized by peripheral electronic
devices;
- a voice synthesis message generator GC for indicating the cause of activation of the
passive infrared sensor SC to those users of the switched telephone network without
an electronic apparatus suitable for receiving and displaying images but are provided
with a normal telephone: the modem MC and the voice synthesis message generator GC
use some of the electronic components in common, namely those dedicated to analog-digital
conversion and to numerical signal processing;
- an electronic device VC for oral communication (in the case of tele-aid);
- an alarm siren AC activated either automatically (following a signal from the passive
infrared sensor SC) or manually (by surveillance stations);
- a radiofrequency remote controller EC for activating or deactivating the surveillance
state of the electronic system or for locally activating an alarm call for the tele-aid
function;
- a low sound-intensity acoustic signaller LC to inform the user of the state of the
electronic control unit C;
- a microprocessor PC for overseeing the operation and programming of the electronic
control unit C;
- a digitalizer device DDC which connects the telecamera TC to the microprocessor PC:
the microprocessor also generates control signals for operating the digitalizer device
DDP and the telecamera TC;
- a memory element FC able to store the filmed images: the memory element FC comprises
three separate units (bulk memory or "flash" memory, image memory, working memory),
which memorize different functions and technical characteristics.
[0030] The electronic control unit C is also equipped with a set BC of rechargeable nickel-cadmium
batteries, which provides a self-sufficiency of some tens of hours of operation (when
the electronic control unit C is in the rest state) in the absence of power from the
electricity mains.CC.
[0031] With reference to Figure 3, P indicates overall one of the peripheral electronic
devices included in the electronic system of the present invention and to be installed
in monitored environments close to that in which the electronic control unit C is
installed.
[0032] Each peripheral electronic device P comprises:
- a telecamera TP (or a device for acquiring images and converting them into electrical
signals);
- a passive infrared sensor SP for activating image acquisition simultaneously with
the detection of a human body moving within the monitored room;
- a lighting device RP for the monitored region, making image acquisition possible even
when there is no external lighting in the environment;
- a radio receiver-transmitter DP for communication with the electronic control unit
C and for transferring the acquired images;
- a set BP of rechargeable nickel-cadmium batteries for operating the electronic system
in the absence of power from the electricity mains CP (the self-sufficiency of said
battery set BP is some tens of hours of operation when the electronic control unit
C is in the rest state);
- a microprocessor PP for overseeing the operation and programming of the peripheral
electronic device P;
- a digitalizer device DDP which connects the telecamera TP to the microprocessor PP:
the microprocessor also generates control signals for operating the digitalizer device
DDP and the telecamera TP;
- a memory element FP able to store the filmed images: the memory element FP comprises
three separate units (bulk memory or "flash" memory, image memory, working memory),
which memorize different functions and technical characteristics.
[0033] With reference to Figure 4, the electronic audio and/or video signal reception apparatus,
indicated overall by R, comprises:
- a screen NR for displaying the images received via the telephone line from the electronic
control unit C (it can be a cathode ray tube or a liquid crystal display);
- an electronic interface circuit IR for communication with the switched telephone network;
- a modem MR (modulator-demodulator device) for connection to a telephone of the user
of the switched telephone network;
- an electronic device VR for oral communication (in the case of tele-aid functions);
- a memory element FR able to store a certain number of the latest images received,
so that these images can be viewed at times subsequent to memorization: the memory
element FR comprises three separate units (bulk memory or "flash" memory, image memory,
working memory), which memorize different · functions and technical characteristics;
- an output socket from the screen NR (not shown on the drawings) which, via the video
signal in standard format, makes the image displayed on the screen NR available for
display on a screen external to the electronic apparatus R or for image videorecording
on a magnetic support;
- a voice synthesis message generator GR (and relative loudspeaker) for emitting information
on alarms underway;
- a keyboard WR enabling the user to program and control the electronic apparatus R;
- a set of storage batteries BR for operating the electronic apparatus R in the absence
of mains electricity supply CR;
- a microprocessor PR which oversees the operation and programming of the peripheral
electronic device R.
[0034] With reference to Figure 5, CT indicates a telephone dialler which communicates via
radio with a removable telecamera TM provided with a power supply; the telephone dialler
CT and the removable telecamera TM are connected to the supply mains and are installed
at the surveillance station S'.
[0035] T' indicates a second telephone line connecting audio and/or video signals between
the telephone dialler CT and:
- a standard telephone TLF;
- a portable signal receiver module RVP provided with an image display screen.
[0036] TEL indicates a cellular telephone which the portable signal receiver module RVP
uses for the telephone connection.
[0037] Finally, CAR indicates an electrical powering device for powering the rechargeable
storage batteries provided within the receiver module RVP.
[0038] With particular reference to Figure 6, the reference numeral 20 indicates overall
the premises of a surveillance station, 11 indicates an electronic reception apparatus
for the audio and/or video signals, 12 represents a cable connecting the apparatus
11 to the electrical supply socket, 13 indicates the telephone line connecting the
reception apparatus 11 to the telephone network 16 via the telephone socket 18 and
connecting the telephone 15 to the network 16 via said telephone socket 18, and 14
indicates a standard multicore cable, for example of scart type, connecting the reception
apparatus 11 to the television set 17 of the surveillance station 20.
[0039] The reference numeral 19 indicates an infrared remote controller for the television
set 17, by which the functions of the electronic system of the present invention can
be controlled directly or programmed.
[0040] With particular reference to Figure 7, the electronic reception apparatus 11 comprises:
- a set of storage batteries 21, required for operating the apparatus 11 in the absence
of mains electricity supply 30;
- an electronic device 22 for oral communication (in the case of tele-aid);
- an electronic interface circuit 23 for communication with the switched telephone network
16;
- a modem 24 (modulator-demodulator device) for connection to the telephone 15 of the
surveillance station 20;
- a memory element 25 able to store the images filmed within the interior of the premises
of the moniotored user (the memory element 25 comprises three separate units, namely
a bulk memory or "flash" memory, an image memory, and a working memory), which memorize
different functions and technical characteristics;
- a radio controller or an infrared electronic receiver device 26;
- a voice synthesis message generator GR 27 (and relative loudspeaker) for emitting
information on alarms underway;
- a keyboard 28 enabling the user to program and control the electronic apparatus 11;
- a device 31 for generating the composite video signal to be fed along the stand multicore
cable 14 connected to the television set 17;
- a microprocessor 32 which oversees the operation and programming of the electronic
reception apparatus 11.
[0041] The operation of that embodiment of the audio and/or video signal transfer system
described by way of non-limiting example and illustrated in Figures 1-4, is as follows:
[0042] The electronic control unit C can acquire the image of the environment in which it
is installed in two different ways, namely by command by the electronic image reception
apparatus R or because of an alarm event if the electronic control unit C is in a
surveillance state.
[0043] In the case of command by the electronic apparatus R, the apparatus user by pressing
a determined sequence of keys on the keyboard WR of said apparatus can order the acquisition
of an image.
[0044] This is achieved by an automatic procedure, comprising telephonically connecting
the electronic apparatus R to the control unit C: the electronic reception apparatus
R sends a call to the control unit C via the telephone network; the control unit C
acquires an image (possibly by illuminating the environment by the infrared or visible
light device RC) and returns the image to the apparatus R, which displays it on its
screen NR.
[0045] The user of the apparatus R can decide to continue the acquisition of other images
or conclude the procedure.
[0046] Alternatively, because of an alarm event or a request for assistance by the user
of the control unit C (if said control unit C has been put into a surveillance state
by the remote controller EC), the passive infrared sensor SC is activated, the control
unit C acquires an image (possibly with activation of its infrared lighting device
RC if the subject is not identifiable) and the control unit C sends a call via the
telephone network to the apparatus R and, having made the connection, transfers a
first image to it.
[0047] The apparatus R informs the surveillance station of the event underway by an announcement
by the voice synthesis generator GC, of the type: "Attention, attention, alarm sounding,
image available".
[0048] Following this, the control unit C feeds the successive images of the monitored environment
until the surveillance station decides to cease their acquisition.
[0049] The siren AC of the control unit C can be automatically activated by the control
unit C or can be activated by a command from the surveillance station, via the telephone
network, for example after acquiring a number of images.
[0050] In the case of a visible-light lighting device RC (incandescent lamp), the control
unit C activates the device RC only after completing the transfer of the first image,
which is acquired in the absence of light so as not to be immediately identifiable.
[0051] Following activation of the remote controller EC for tele-aid, the lighting device
RC is activated from the very first image, as it is not necessary to protect the identity
of the control unit C.
[0052] During a connection between the reception apparatus R and the control unit C, the
device can be activated by an oral communication device VC, VR to provide acoustic
monitoring of the environment in which the control unit C is positioned, or to converse
with the persons present.
[0053] The electronic reception apparatus R enables the surveillance station to memorize
one or more images in the memory element FR for their later analysis by the control
unit C.
[0054] Images withdrawn from the memory element FR are displayed on the screen NR and can,
for example, be recorded on a magnetic tape by an external apparatus using the video
signal output socket (not shown) with which the apparatus R is provided.
[0055] The possible peripheral electronic devices P extend the operation of the control
unit C by allowing the surveillance station to view images originating from other
environments different from but close to that in which the control unit C is installed.
[0056] Again in this case, operation takes place if an alarm arises (if the control unit
C has been set to the surveillance state by an appropriate key positioned on the remote
controller EC), or by a command by the electronic apparatus R via the keyboard WR
in accordance with an automatic procedure identical to the connection between the
apparatus R and the control unit C: in this respect, the apparatus R sends a call
along the telephone network to the control unit C; via the radio connection which
occurs between the receiver-transmitters DC, DP, the control unit C requests the acquisition
of an image from the selected peripheral device P; the peripheral device P feeds the
acquired image to the control unit C by radio, using the receiver-transmitter (possibly
lighting the environment with its own lighting device RP).
[0057] Finally, the control unit C returns the image to the apparatus R, which displays
it on its own screen NR.
[0058] The surveillance station can decide to continue the acquisition of further images
or terminate the procedure.
[0059] In the case of an alarm event with the control unit C in its surveillance state,
the passive infrared sensor RP of a peripheral device P is activated, the peripheral
device P acquires the image and transfers it by radio to the control unit C, using
the receiver-transmitter DP; and the control unit C activates the same alarm procedure
which would have been generated by the activating of its own sensor SC: via the telephone
network, the control unit C sends a call to the apparatus R and when the connection
is made transfers to it a first image provided by the peripheral device P.
[0060] The electronic reception apparatus R informs the surveillance station of the event
underway by an announcement by the voice synthesis generator GC, of the type: "Attention,
attention, alarm sounding, image available".
[0061] Following this, the control unit C feeds the successive images of the environments
monitored by the peripheral devices P until the surveillance station decides to cease
their acquisition.
[0062] The siren AC of the control unit C can be automatically activated by the control
unit C or can be activated by a command from the surveillance station, via the telephone
network, for example after acquiring a number of images.
[0063] Again in this case, if a visible-light lighting device RC (incandescent lamp) is
activated, the peripheral device P activates said lighting device RC only after completing
the transfer of the first image, which is acquired in the absence of light so as not
to be immediately identifiable.
[0064] The user selects the peripheral device P from which to acquire images by pressing
appropriate keys or key sequences on the keyboard WR of the electronic reception apparatus
R.
[0065] The control unit C can be switched into or out of the surveillance state in two ways:
either locally by the remote controller EC or from the reception position by the electronic
reception apparatus R.
[0066] When in proximity to the control unit C, the user by pressing a key on the remote
controller EC switches the control unit C into the non-surveillance state.
[0067] When in the non-surveillance state the control unit C does not initiate any procedure
for calling the electronic apparatus R in the case of an alarm indicated by the passive
infrared sensor SC.
[0068] The control unit C is switched into the non-surveillance state when the environment
in which it is positioned is inhabited or frequented by persons.
[0069] The surveillance state of the control unit C can also be altered by a function of
the electronic apparatus R, activated by pushing a determined sequence of keys.
[0070] The apparatus R can effect this operation either by directly calling the control
unit C or when there is already a connection with the control unit C underway, for
example during a telephone alarm call.
[0071] The operation of the electronic control unit C is governed by a microprocessor PC
of the eight or sixteen bit type depending on the number of images to be handled.
[0072] When in its rest state, said microprocessor PC analyzes the output of the passive
infrared sensor SC, performs radio communication with the possible peripheral devices
P by enabling the receiver-transmitter DC and analyzes the electronic interface circuit
IC for communication with the telephone line to identify a possible call signal.
[0073] In the case of an alarm generated by the passive infrared sensor SC, the microprocessor
PC activates the telecamera TC and the lighting device RC (if of infrared type) and
acquires the image present, to memorize it in its own digital memory element FC. Simultaneously
the microprocessor PC activates the electronic telephone interface circuit IC by calling
the telephone number to which the electronic reception apparatus R has been connected.
Having made the connection with the modem MR of the apparatus R, the control unit
C feeds the data regarding the acquired image to the apparatus R via its own modem.
[0074] The microprocessor PC can process the image data before transmission to eliminate
the redundancies of the video signal, by one of the algorithms of the known art (for
example using a protocol of CCITT-V32bis type), to best utilize the small band width
of the telephone channel.
[0075] In the case of radio reception of an alarm condition by one of the peripheral devices
P, the control unit C, by radio using the receiver-transmitter DC, receives from the
peripheral device P the data regarding the image and memorizes them in the digital
memory element FC.
[0076] The procedure for feeding data to the electronic apparatus R via the telephone line
is the same as the case in which the alarm is generated by activation of the infrared
sensor SC of the control unit C.
[0077] In all cases of alarm (alarm generated by the sensor SC of the control unit C or
generated by one of the passive infrared sensors SP of the peripheral devices P),
the control unit C makes an alarm call to stations provided with the electronic reception
apparatus R which can display the acquired image, and to stations without the electronic
apparatus R (and hence without a display screen NR), who possess as the station terminal
a normal telephone.
[0078] To stations without an electronic apparatus R and display screen NR the control unit
C feeds a voice synthesis alarm message generated by the generator GC.
[0079] The interface circuit IC towards the telephone line also comprises a call detector
(not shown on the figures) which enables the control unit C to reply automatically
to an entering call.
[0080] This provides the function of remote surveillance, ie the apparatus R can call the
control unit C from any remote place connected to the telephone network, and command
the acquisition of an image sequence by the telecamera TC of the control unit C or
by the telecameras TP of one or more peripheral devices P.
[0081] The call detector also allows programming of the control unit C.
[0082] Having identified a call, the microprocessor PC engages the telephone line and dialogues
with the calling apparatus R via the modem MC; having received from the apparatus
R the command relative to the function to be performed, the microprocessor PC executes
it (image acquisition, activation of the lighting device RC, memorizing in the memory
FC the data regarding the image from the telecamera TC); the microprocessor PC then
possibly processes the image data and feeds them to the apparatus R via the modem
MC.
[0083] Operation of the entire control unit C is ensured even in the absence of the mains
electrical supply CC, because of the incorporated rechargeable storage battery set
BC which provides self-sufficiency for some tens of hours of operation in the rest
state.
[0084] The microprocessor PP of the peripheral device P analyzes, while in the rest state,
the state of the passive infrared sensor SP and receiver-transmitter DP, which communicates
via radio with the control unit C.
[0085] In the case of an alarm sensed by the infrared sensor SP, the microprocessor PP activates
the lighting device RP and acquires an image from the telecamera TP, storing its data
in the memory element FP; the image data, possibly processed to eliminate video signal
redundancies in accordance with an algorithm of the known art, are then transmitted
by radio using the receiver-transmitter DP, to the control unit C which feeds them
via the telephone line to the apparatus R.
[0086] The microprocessor PP can receive an image acquisition command from the control unit
C via the receiver-transmitter DP.
[0087] In a manner identical to that already described relative to the control unit C, the
microprocessor PP in this case handles the image acquisition and data transfer to
the control unit C.
[0088] Operation of the peripheral device P is ensured even in the absence of the mains
electrical supply CP, because of the incorporated rechargeable storage battery set
BP which provides operational self-sufficiency for some tens of hours of operation
in the rest state.
[0089] The microprocessor PR of the electronic image reception apparatus R governs the overall
operation of the device.
[0090] When in the rest state the microprocessor PR analyzes the commands fed via the keyboard
WR and the electronic interface circuit IR to the telephone network.
[0091] When a call enters from the telephone network, the microprocessor PR senses it and
initiates an automatic response procedure.
[0092] In this case the microprocessor PR engages the telephone line and dialogues with
the modem MC of the control unit C; the microprocessor PR then transfers data regarding
an image sent by the control unit C and copies them in a portion of the memory element
FR; the image is immediately displayed on the screen NR (of the cathode ray or liquid
crystal type); the microprocessor PR also triggers reproduction of a synthetic voice
message via the message generator and the incorporated loudspeaker GR to warn the
surveillance station of the event underway; the surveillance station can terminate
the acquisition and communication phase underway by feeding a determined command via
the keys of the keyboard WR.
[0093] The functions which can be activated by the keyboard WR (and handled by the microprocessor
PR and memory element FR) are many, such as programming the mode of operation of the
electronic apparatus R (the telephone number of the control unit C, the time and the
date can be set), programming the control unit C (the private parameters of the control
unit C, for example the telephone numbers to be called in the case of an alarm, can
be changed via the telephone network using an appropriate protected procedure), interrogating
the control unit C for image acquisition (the image acquisition command can be provided
via the modem MR, the electronic interface circuit IR and the telephone line), examining
the images memorized in the memory element FR (the microprocessor PR scans the memory
element FR and commands its display on the screen NR).
[0094] Operation of the entire electronic reception apparatus R is ensured even in the absence
of the mains electrical supply CR, because of the incorporated rechargeable storage
battery set BR which provides self-sufficiency for some tens of hours of operation
in the rest state.
[0095] With regard to the embodiment described (by way of non-limiting example) and illustrated
in Figures 6 and 7, the electronic audio and/or video signal transfer system of the
present invention operates as follows.
[0096] Again in this case, an electronic control unit installed with the monitored user
acquires an image of the environment in which it is installed, on command by the surveillance
station or following an alarm generated by the monitored user, or automatically following
the detection of a person in the monitored environment.
[0097] In all cases the surveillance station 20 can see the image of the monitored environment
on its television set 17 (which is connected to the electronic reception apparatus
11 for signals originating from the control unit) or directly on the electronic apparatus
11 if this is portable and provided with a screen (generally of liquid crystal type).
[0098] After receiving an image, the station can simply use the telephone 15 or, by pressing
a key on the keyboard 28 of the electronic reception apparatus 11, can command the
acquisition of new images or listen to the sounds produced in the monitored environment
or speak orally to the assisted person via the electronic device 22.
[0099] If the electronic apparatus 11 is fixed, the television set 17 of the surveillance
station 20 acts as the image screen and the television loudspeaker acts as the audio
transmitter.
[0100] The electronic apparatus 11 is also provided with an infrared receiver device 26
able to self-learn some of the commands emitted by the infrared remote controller
19 of the television set 17 of the station 20.
[0101] In this manner the surveillance station can, using the remote controller 19 of its
own television set 17, command some of the functions of the electronic reception apparatus
11.
[0102] Two stages of operation-of the electronic reception apparatus 11 for the audio and/or
video signals can be distinguished, namely when the electronic apparatus 11 is called
by the electronic control unit of the monitored user and when the electronic apparatus
11 calls said control unit.
[0103] When the electronic apparatus 11 is called by the control unit it replies automatically
to the telephone call after a certain number of rings of the telephone set 15 of the
surveillance station 20 (the number of rings can be programmed by the user).
[0104] If the television set 17 is switched on and is receiving a program, the electronic
apparatus 11 automatically causes the image received from the control unit to be displayed,
interrupting reception of the television program.
[0105] This enables the surveillance station to be alerted automatically. If the television
set 17 is not switched on at that moment in which the electronic apparatus 11 receives
an image from the telephone line 13, the apparatus 11 memorizes this image and a certain
number (programmable) of subsequent images, enabling them to be displayed later on
command by the surveillance station.
[0106] The command can be triggered by the electronic apparatus 11 or by the infrared remote
controller 19 of the television set 17.
[0107] Display is always by the television set 17 of the surveillance station 20.
[0108] When the electronic apparatus 11 calls the control unit, this signifies that the
surveillance station, of its initiative, intends to acquire an image of the monitored
environment.
[0109] The surveillance station 20 can command this function by its user pressing a pushbutton
of the electronic apparatus 11 or by directly operating the infrared remote controller
19 of its own television set 17.
[0110] The microprocessor 32 governs the overall operation of the apparatus 11.
[0111] In the rest state the microprocessor 32 analyzes the keyboard 28 and the electronic
interface circuit 23 to the telephone network 16.
[0112] When a call enters from the telephone network 16, the microprocessor 32 senses it
and initiates an automatic response procedure.
[0113] In this case the microprocessor 32 engages the telephone line 13 and dialogues with
the modulator-demodulator device of the control unit.
[0114] The microprocessor 32 then transfers digital data regarding an image sent by the
control unit and copies them in a portion of the memory element 25, the image being
displayed on the television set 17 connected to the electronic apparatus 11 (the microprocessor
32 commands the video and audio interface circuit 23 such as to switch the television
set 17 to display of images and reproduction of sounds originating from the electronic
apparatus 11).
[0115] The microprocessor 32 also triggers reproduction of a vocal message via the device
27 and the relative loudspeaker of the apparatus 11 and possibly by the loudspeaker
of the television set 17 to warn the surveillance station 20 of the event underway.
[0116] The surveillance station user can conclude the acquisition and communication under
way by feeding a suitable command via the keyboard 28 of the apparatus 11 or keying
a suitable command on the infrared remote controller 19 of the television set 17.
[0117] The microprocessor 32, in its rest state, can sense the pressing of a key or a sequence
of keys of the keyboard 28 or decode a command fed by the station to the infrared
receiver device 26 of the television set 17.
[0118] In this case the following functions can be activated:
1) Programming the mode of operation of the electronic apparatus 11: by means of appropriate
procedures the microprocessor 32 acquires from the user all the information relative
to the desired operation of the apparatus 11 (for example, the telephone number of
the control unit, the time and date), recording them in the memory element 25, within
the private unerasable memory region.
2) Programming the control unit: this is done by an appropriate procedure, comprising
telephone connection to the control unit and information exchange, by means of the
modulator-demodulator devices with which the control unit and apparatus 11 are provided.
By means of an appropriate protected procedure, using the keyboard 28 of the apparatus
11 the private parameters of the surveillance, such as the telephone number to be
called in the case of an alarm, can be changed.
3) Interrogating the control unit for image acquisition (by the control unit or by
the peripheral electronic devices situated in environments close to that in which
the control unit is installed); this is achieved by interrogation of the control unit
by the electronic apparatus 11, effected along the telephone line 13.
By suitably commanding the telephone interface circuit 23 and initiating a dialogue
via the modem 24, the microprocessor 32 becomes connected to the control unit and
sends the image acquisition command.
4) Memory examination: by feeding a suitable command via the keyboard 28, the images
memorized in the element 25 of the apparatus 11 can be later examined.
[0119] In this case the microprocessor 32 scans its image memory and commands its display
on the liquid crystal screen of the apparatus 11 or on the screen of the television
set 17.
[0120] Again in this case operation of the entire electronic system is ensured in the absence
of the mains electrical supply 30, because of the incorporated storage battery set
21 which provides adequate self-sufficiency (some tens of hours of operation in the
rest state.)
[0121] From the aforegoing description the characteristics of the electronic system for
audio and/or video signal transfer according to the present invention are clear, as
are the resultant advantages.
[0122] In particular, these are:
- flexibility, ease and rapidity of installation and wiring of the system electronic
components;
- versatility of application of the system to existing installations without having
to modify the electrics;
- ease of integration with other known electrical systems and/or image reception apparatus,
and reliability in terms of ease of use (because of the method of recognizing the
installed peripheral apparatus and hence the rapid configuration) and the unambiguous
identification of an apparatus fault, following diagnostic error messages;
- time saving in system installation compared with the known art;
- time saving in the procedures for checking operation and self-sufficiency of the apparatus
connected to the system, compared with the known art;
- ability to reach any remote image reception position (at any distance) and different
surveillance stations with sounds and images from the premises of the environment
to be monitored, in the case of a break-in attempt or a request for aid by the user
of the control unit;
- ability to reach any remote image reception position (at any distance) in the case
of a visual aid message;
- saving in appliance cost and installation compared with the known art.
[0123] The aforedescribed electronic system for audio and/or video signal transfer can be
easily extended to the case in which the electronic reception apparatus consists of
a signal receiver module (provided with an image display screen) connected to a standard
telephone or a cellular telephone.
[0124] In this case the electronic control unit is provided with a removable telecamera
connected by radio to a telephone dialler which is connected via the telephone network
to the signal receiver module (provided with an image display screen) and to the standard
telephone.
[0125] The signal receiver module is connected to an electrical power supply and can consist
of a portable video unit with a liquid crystal screen.
[0126] Finally, it is apparent that numerous further modifications can be made to the electronic
system for audio and/or video signal transfer according to the present invention,
without leaving the novel principles of the inventive idea, it being also apparent
that in the practical implementation of the invention, the materials, shapes and dimensions
of the illustrated details can be chosen at will according to requirements, and can
be replaced by others technically equivalent.
1. Electronic system for transferring audio and video signals, which is capable of transferring
to surveillance stations (20, U, U') vocal messages and images originating from monitored
user environments (S, S') or vocal messages and images used for assisting persons
requiring aid, comprising at least one control unit (C) for transmitting said audio
and video signals, which is installed within said monitored environments (S, S'),
and at least one electronic reception apparatus (11, R) for receiving said audio and
video signals, which is installed within said surveillance stations (20, U, U'), wherein
said electronic control unit (C) includes electrical power supplying means (BC, CC),
image acquisition and converting means (SC, TC, DDC, RC, TM), means for memorising
(FC) and transmitting (MC, IC, CT) said images, means for generating (GC, AC, LC)
and transmitting (VC) vocal messages and acoustic warnings, means for triggering (EC)
the surveillance state and means for overseeing (PC) the functioning of the control
unit (C) by means of data communication, commands and instructions along digital buses,
and wherein said electronic reception apparatus (11, R) includes electrical power
supplying means (21, 30, BR, CR, CAR), means for receiving (17, 27, GR, RVP) audio
signals, means for receiving and emitting (22, 27, VR, GR, TLF, TEL) said vocal messages
and said acoustic warnings, means for receiving (17, 31, IR, MR, RVP), memorising
(25, FR) and displaying (17, NR) said images, means for overseeing (32, PR) the functioning
of the reception apparatus (11, R) by means of data communication, commands and instructions
along digital buses, means for programming and controlling (19, 26, 28, WR) the reception
apparatus (R) and the control unit (C), said images being transferred along at least
one switched telephone line (13, T, T'), characterised in that said image acquisition and converting means (SC, TC, DDC, RC, TM) and said transmitting
means (MC, IC, CT) of the control unit (C) consist, respectively, of at least one
telephone dialler (CT) connected to the electrical mains and at least one movable
camera (TM) with a power unit connected to the electrical mains, said telephone dialler
(CT) and said movable camera (TM) being installed within said monitored user environments
(S, S') and mutually exchanging radiofrequency signals, said telephone dialler (CT)
also being connected, via said switched telephone line (13, T, T'), to at least one
telephone set (TLF) and to at least one television set (17) of said reception apparatus
(11, R), said television set (17) being installed at said surveillance stations (20,
U, U') and being provided for displaying on a screen at said surveillance stations
(20, U, U') the images transferred from said monitored environments (S, S') when said
telephone set (TLF) of said electronic reception apparatus (11, R) is activated by
a telephone call, coming from the telephone dialler (CT) of said control unit (C),
wherein when said television set (17) is off and does not receive a TV program, said
electronic reception apparatus (11, R) memorises said images coming from said monitored
environments (S, S') in a memory, allowing them to be displayed later on said television
set (17), via a keyboard (28) or by operating an infrared remote controller (19) of
the television set (17) or by scanning said image memory.
2. Electronic system as claimed in claim 1, characterised in that said television set (17) is provided with an infrared remote controller (19), an
infrared receiver (26) and a keyboard (28) for displaying said transferred images
on said screen.
3. Electronic system as claimed in claim 1, characterised in that, when said television set (17) is on and receives a TV program, said electronic reception
apparatus (11, R) automatically triggers the display of said images received from
said monitored environments (S, S') and interrupts the reception of said TV program.
1. Elektronisches System zur Übertragung von Audio- und Videosignalen, das von überwachten
Benutzerumgebungen (S, S') stammende Sprachnachrichten und Bilder oder zur Hilfe für
hilfsbedürftige Personen verwendete Sprachnachrichten und Bilder an Überwachungsstationen
(20, U, U') übertragen kann, mit mindestens einer Steuereinheit (C) zur Übertragung
der Audio- und Videosignale, die in den überwachten Umgebungen (S, S') eingerichtet
ist und mindestens einer elektronischen Empfangsvorrichtung (11, R) zum Empfang der
Audio- und Videosignale, die in den Überwachungsstationen (20, U, U') eingerichtet
ist, wobei die elektronische Steuereinheit (c) eine elektrische Stromversorgungseinrichtung
(BC, CC), eine Bildannahme- und Umwandlungseinrichtung (SC, TC, DDC, RC, TM), eine
Einrichtung zum Speichern (FC) und Übertragen (MC, IC, CT) der Bilder, eine Einrichtung
zur Erzeugung (GC, AC, LC) und Übertragung (VC) von Sprachnachrichten und akustischen
Warnungen, eine Einrichtung zur Auslösung (EC) des Überwachungszustands und eine Einrichtung
zur Kontrolle (PC) der Funktion der Steuereinheit (C) mittels Datenkommunikation,
Kommandos and Befehlen über digitale Busse beinhaltet, und wobei die elektronische
Empfangsvorrichtung (11, R) eine elektrische Stromversorgungseinrichtung (21, 30,
BR, CR, CAR), eine Einrichtung zum Empfang (17, 27, GR, RVP) von Audiosignalen, eine
Einrichtung zum Empfang und zum Aussenden (22, 27, VR GR, TLF, TEL) der Sprachnachrichten
und der akustischen Warnungen, eine Einrichtung zum Empfang (17, 31, IR, MR, RVP)
zum Speichern (25, FR) und zur Anzeige (17, NR) der Bilder, eine Einrichtung zur Kontrolle
(32, PR) der Funktion der Empfangsvorrichtung (11, R) mittels Datenkommunikation,
Kommandos und Befehlen über digitale Busse und eine Einrichtung zur Programmierung
und Steuerung (19, 26, 28, WR) der Empfangsvorrichtung (R) und der Steuereinheit (C)
beinhaltet, wobei die Bilder über mindestens eine vermittelte Telefonleitung (13,
T, T') übertragen werden, dadurch gekennzeichnet, daß die Bildannahme- und Umwandlungseinrichtung (SC, TC, DDC, RC, TM) und die Übertragungseinrichtung
(MC, IC, CT) der Steuereinheit (C) jeweils aus mindestens einem mit dem elektrischen
Stromversorgungsnetz verbundenen Telefonwähler (CT) und mindestens einer beweglichen
Kamera (TM) mit einem mit dem elektrischen Stromversorgungsnetz verbundenen Netzteil
besteht, wobei der Telefonwähler (CT) und die bewegliche Kamera (TM) innerhalb der
überwachten Benutzerumgebungen (S, S') eingerichtet sind und wechselweise Funkfrequenzsignale
austauschen, der Telefonwähler (CT) über die vermittelte Telefonleitung (13, T, T')
auch mit mindestens einem Telefonapparat (TLF) und mindestens einem Fernsehapparat
(17) der Empfangsvorrichtung (11, R) verbunden ist und der Fernsehapparat (17) an
den Überwachungsstationen (20, U, U') zur Anzeige der von den überwachten Umgebungen
(S, S') übertragenen Bilder auf einem Schirm bei den Überwachungsstationen (20, U,
U') vorgesehen ist, wenn der Telefonapparat (TLF) der elektronischen Empfangsvorrichtung
(11, R) durch einen von dem Telefonwähler (CT) der Steuereinheit (C) stammenden Telefonanruf
aktiviert wird, wobei dann, wenn der Fernsehapparat (17) ausgeschaltet ist und kein
Fernsehprogramm empfängt, die elektronische Empfangsvorrichtung (11, R) die von den
überwachten Umgebungen (S, S') kommenden Bilder in einem Speicher speichert, so daß
sie über eine Tastatur (28) oder durch Bedienung einer Infrarot-Fernsteuerung (19)
des Fernsehapparats (17) oder durch Abtasten des, Bildspeichers später auf dem Fernsehapparat
(17) angezeigt werden können.
2. Elektronisches System nach Anspruch 1, dadurch gekennzeichnet, daß der Fernsehapparat (17) mit einer Infrarot-Fernsteuerung (19), einem Infrarot-Empfänger
(26) und einer Tastatur (28) zur Anzeige der übertragenen Bilder auf dem Schirm versehen
ist.
3. Elektronisches System nach Anspruch 1, dadurch gekennzeichnet, daß dann, wenn der Fernsehapparat (17) eingeschaltet ist und ein Fernsehprogramm empfängt,
die elektronische Empfangsvorrichtung (11, R) die Anzeige der von den überwachten
Umgebungen (S, S') her empfangenen Bilder automatisch auslöst und den Empfang des
Fernsehprogramms unterbricht.
1. Système électronique pour le transfert de signaux audio et vidéo pouvant transférer
vers des postes de surveillance (20, U, U') des messages vocaux et des images provenant
d'environnements contrôlés d'utilisateur (S, S') ou des messages vocaux et des images
utilisés pour assister des personnes nécessitant une aide, comprenant au moins une
unité de commande (C) pour émettre lesdits signaux audio et vidéo, qui est installé
dans lesdits environnements contrôlés (S, S') et au moins un appareil électronique
de réception (11, R) pour recevoir lesdlts signaux audio et vidéo qui est installé
dans lesdits postes de survelliance (20, U, U'), dans lequel ladite unité de commande
électronique (G) comprend des moyens d'alimentation en énergie électrique (BC, CC),
des moyens d'acquisition et de conversion d'image (SC, TC, DDC, RC, TM), des moyens
pour la mémorisation (FC) et pour la transmission (MC, IC, CT) desdites images, des
moyens pour la génération (GC, AC, LC) et pour la transmission (VC) de messages vocaux
et d'avertissements acoustiques, un moyen pour déclencher (EC) l'état de surveillance
et un moyen pour superviser (PC) le fonctionnement de l'unité de commande (C) au moyen
d'une communication de données, de commandes et d'instructions le long de bus numériques,
et dans lequel ledit appareil électronique de réception (11, R) comprend des moyens
d'alimentation en énergie électrique (21, 30, BR, CR, CAR), des moyens pour la réception
(17, 27, GR, RVP) de signaux audio, des moyens pour recevoir et émettre (22, 27, VR,
GR, TLF, TEL) lesdits messages vocaux et lesdits avertissements acoustiques, des moyens
pour recevoir (17, 31, IR, MR, RVP), pour mémoriser (25, FR) et pour afficher (17,
NR) lesdites images, des moyens pour superviser (32, PR) le fonctionnement de l'appareil
de réception (11, R) au moyen d'une communication de données, de commandes et d'instructions
sur des bus numériques, des moyens pour programmer et commander (19, 26, 28, WR) l'appareil
de réception (R) et l'unité de commande (C), lesdites images étant transférées sur
au moins une ligne téléphonique commutée (13, T, T'), caractérisé en ce que lesdits moyens d'acquisition et de conversion d'image (SC, TC, DDC, RC, TM) et lesdits
moyens de transmission (MC, IC, CT) de l'unité de commande (C) consistent respectivement
en au moins un numéroteur téléphonique (CT) connecté au réseau électrique et au moins
une caméra mobile (TM) munie d'une unité d'alimentation connectée au réseau électrique,
ledit numéroteur téléphonique (CT) et ladite caméra mobile (TM) étant installés à
l'intérieur desdits environnements contrôlés d'utilisateurs (S, S') et échangeant
mutuellement des signaux de fréquence radio, ledit numéroteur téléphonique (CT) étant
connecté, de même, par l'intermédiaire de ladite ligne téléphonique commutée (13,
T, T') à au moins un combiné téléphonique (TLF) et à au moins un poste de télévision
(17) dudit appareil de réception (11, R), ledit poste de télévision (17) étant installé
dans lesdits postes de surveillance (20, U, U') et étant prévu pour afficher sur un
écran desdits postes de surveillance (20, U, U') les images transférées à partir desdits
environnements contrôlés (S, S') lorsque ledit combiné téléphonique (TLF) dudit appareil
électronique de réception (11, R) est activé par un appel téléphonique provenant du
numéroteur téléphonique (CT) de ladite unité de commande (C), dans lequel, lorsque
ledit poste de télévision (17) est éteint et ne reçoit pas de programme TV, ledit
appareil électronique de réception (11, R) mémorise lesdites images provenant desdits
environnements contrôlés (S, S') dans une mémoire, leur permettant d'être affichés
plus tard sur ledit poste de télévision (17) par l'intermédiaire d'un clavier (28)
ou par actlonnement d'une unité de commande à distance à infrarouge (19) du poste
de télévision (17) ou par balayage de ladite mémoire d'image.
2. Système électronique selon la revendication 1, caractérisé en ce que ledit poste de télévision (17) est muni d'une unité de commande à distance à infrarouge
(19), d'un récepteur à infrarouge (26) et d'un clavier (28) pour afficher lesdites
images transférées sur ledit écran.
3. Système électronique selon la revendication 1, caractérisé en ce que lorsque ledit poste de télévision (17) est allumé et reçoit un programme TV, ledit
appareil électronique de réception (11, R) déclenche, de façon automatique, l'affichage
desdites images reçues desdits environnements contrôlés (S, S') et interrompt la réception
dudit programme TV.