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EP 1 154 673 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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22.02.2017 Bulletin 2017/08 |
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Date of filing: 12.05.2000 |
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International Patent Classification (IPC):
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Combining two signals in a hearing aid
Hörhilfegerät mit Kombination von zwei Signalen
Prothèse auditive avec la combinaison de deux signaux
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Designated Contracting States: |
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AT BE CH CY DE DK ES FI FR GB GR IE IT LI LU MC NL PT SE |
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Date of publication of application: |
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14.11.2001 Bulletin 2001/46 |
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Proprietor: OTICON A/S |
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2765 Smørum (DK) |
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Inventor: |
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- Christensen, Thomas E.
2765 Smorum (DK)
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References cited: :
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- PATENT ABSTRACTS OF JAPAN vol. 018, no. 003 (E-1485), 6 January 1994 (1994-01-06)
-& JP 05 244696 A (HITACHI LTD), 21 September 1993 (1993-09-21)
- PATENT ABSTRACTS OF JAPAN vol. 018, no. 608 (E-1633), 18 November 1994 (1994-11-18)
-& JP 06 233389 A (SONY CORP), 19 August 1994 (1994-08-19)
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
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FIELD OF THE INVENTION
[0001] The invention relates to communication devices, more specifically to the problem
of combining two electrical signals, e.g. in connection with the presence of an occlusion
effect or acoustical feedback or noise cancellation in a hearing aid, a headset or
a telephone.
BACKGROUND OF THE INVENTION
[0002] Communication devices of various kinds are known where two or more signals often
could be combined in order to achieve a desired effect. The communication devices
count hearing aids, headsets and telephones, especially mobile telephones.
[0003] Hearing aids are devices intended for providing remedy for a hearing impairment experienced
by a person. The hearing aid typically comprises a microphone, an amplifier and an
output receiver assembled in a housing to be placed behind the ear or in the ear of
the user. Examples from the hearing aid area counts occlusion effect and acoustic
and magnetic feedback, which can be very annoying and often will totally destroy the
communication to and from the hearing aid user.
[0004] A headset typically comprises at least one output transducer and one input transducer,
for output of e.g. a telephone signal and for input to a telephone, respectively.
Connecting wires or a wireless connection to a telephone may be provided.
[0005] A mobile telephone typically comprises at least one output transducer and one input
transducer and receiving and transmitting means.
[0006] Japanese Patent
5-244696 to Akihiko discloses a hearing aid, which receives an acoustic signal via a microphone and a
vibratory signal via a transducer, processes the corresponding electrical signals
digitally, adds the processed signals to form a combined signal and radiates the combined
signal as an acoustic signal. The adding of the signals takes place in a digital adding
circuit. The purpose of adding the signals is to provide the wearer of the hearing
aid with a feedback of his voice, which propagates through the bone structure of his
head and is received as vibrations by the transducer.
[0007] Japanese Patent
6-233389 to Akiyoshi discloses a hearing aid, which performs the same operations as the ones disclosed
in Japanese Patent
05244696 and further applies adaptive digital signal processing to the electrical signals
in order to obtain a desired level of the voice feedback.
[0008] European Patent Application
0 137 550 by op de Beek et al. discloses improving an electrodynamic output transducer with a magnet system and
a membrane, the membrane being mechanically connected to a plurality of driving coils
and the driving coils being arranged in a common air gap of the magnet system. For
each driving coil, a dedicated switching circuit is provided to selectively energize
or short-circuit the driving coil in dependence of the value of an associated bit
within an n-bit digital signal. The conductance of each of the driving coils corresponds
with the significance of the associated bit within the digital signal. When the output
transducer is operated, the position of the membrane is proportional to the value
of the n-bit digital signal, and the output transducer functions together with the
switching circuits as a digital-electrical-to-analog-acoustic signal converter.
[0009] United States Patent
5,949,889 to Cooper discloses a hearing aid system with ultrasonic transmission of information and command
signals between the two hearing aids comprised in the system. Each hearing aid has
an auditory channel with a microphone and an output transducer, and an ultrasonic
channel also comprising a microphone and an output transducer.
[0010] United States Patent
4,449,018 to Stanton discloses a hearing aid with an upper and a lower auditory channel, each comprising
a microphone and an output transducer.
[0011] United States Patent Application
US2001/0017922 A1 by Kim, discloses an electrodynamic out-put transducer with an integrated vibrator, the
output transducer and the vibrator sharing a permanent magnet, but having separate
driving coils.
[0012] It is apparently desirous in hearing aids and other communication devices, such as
headsets and telephones to combine two or more signals in order to provide a compensation
for an undesired signal influencing the use of the communication device. This is particularly
relevant in noisy environments and when the communication device is used by a person
who has a hearing impairment making speech understanding more difficult when an environmental
distortion is present.
[0013] In the field of hearing aids the occlusion effect and feedback problems are well-known
phenomenon, which gives rise to a significant irritation and discomfort when using
a hearing aid.
[0014] From other areas, such as the headset and the telephone areas, the problems are most
often noise related. Noise reduction algorithms are often implemented in order to
achieve a more clear communication.
[0015] For all areas counts that the combination of signals sets significant demands to
the signal processing equipment. The problems of combining two or more signals in
fact often gives rise to several problems and the result of the combination often
results in a significantly reduced quality of the desired signal. The problems of
combining two signals are particularly significant when the one signal is a digital
signal and the other signal is an analog signal. In this situation the negative influence
of the signals on each other is often devastating.
[0016] An objective of the present invention is to provide a method by which two signals
may be added to each other with reduced negative influence on the desired output signal.
[0017] Another objective of the present invention is to provide a communication device where
two signals may be added to each other with reduced negative influence on the desired
output signal.
[0018] A further objective of the present invention is to provide a hearing aid, where two
signals may be added to each other with reduced negative influence on the desired
output signal.
[0019] A still further objective of the present invention is to provide a receiver (speaker),
which can be used in a hearing aid of the type mentioned above in connection with
the adding of two signals to each other with reduced negative influence on the desired
output signal.
SUMMARY OF THE INVENTION
[0020] According to the invention the first objective is achieved by means of a method as
defined in claim 1.
[0021] Preferred embodiments of the method are disclosed in claims 2-4.
[0022] According to the invention the second objective is achieved by means of a device
as defined in claim 5.
[0023] Preferred embodiments of the device are disclosed in claims 6-8.
[0024] According to the invention the third objective is achieved by means of a hearing
aid as defined in claim 5.
[0025] Preferred embodiments are described in claims 10-13.
[0026] According to the invention the fourth objective is achieved by means of a speaker
as defined in claim 14.
[0027] Preferred embodiments of the receiver are disclosed in claims 15.
[0028] The invention is explained in more detail with reference to the drawings in the following
description of preferred embodiments.
BRIEF DESCRIPTION OF THE DRAWINGS
[0029]
FIG. 1 is a schematical diagram showing the principles of the invention.
FIG. 2 is a schematical drawing of a hearing aid featuring the invention;
FIG. 3 is a schematical drawing showing a receiver according to the invention.
DESCRIPTION OF THE PREFERRED EMBODIMENT
[0030] From FIG. 1 the principles of a hearing aid featuring the invention appear. A first
microphone is provided for picking up acoustic input from the environment. The acoustic
signals are transformed into an analog electric signal and converted into a digital
signal in an AD converter. Afterwards the digital signal is processed and amplified
in a processor. Following the processing the processed signal is converted into an
analog signal in a DA converter and supplied to an output transducer, a so-called
receiver. A second microphone is provided for picking up a boneconducted signal or
an acoustic feedback signal. The boneconducted signal may result in the previously
described occlusion effect and the acoustic feedback signal may result in a closed
feedback loop giving rise to an uncontrolled oscillation in the hearing aid. Both
situations are undesired for the hearing aid user. The signal picked up by the second
microphone is processed and afterwards supplied to the same output transducer as the
first signal. The output transducer features two separate driving coils and the first
and the second signal are supplied one to each of these coils.
[0031] From FIG. 2 a hearing aid appears showing the location of the respective elements
described in connection with FIG. 1. The necessary power supply, preferably a battery,
is not shown. The skilled person will however immediately be able to implement this.
[0032] From FIG. 3 an output transducer appears in a cross sectional view. It appears that
two electrically separated driving coils are located within a transducer housing.
The driving coils are located in such a manner that each of these upon receiving an
electrical signal through the terminals provided on the outside of the transducer
housing will induce a field that drives the membrane likewise provided in the transducer
housing. By providing the two driving coils electrically separated in the transducer
housing a compact unit may be achieved and the two individual signals may be supplied
to the transducer without interfering with each other. The two signals are hence supplied
to the transducer in their desired undisturbed form and the resulting acoustic output
signal will show a superpositioning of the two signals. In this manner it is possible
to add a digital and an analog signal to each other, without disturbing one or both
of the signals, and achieve a desired combined signal. It is of course also possible
to combine two digital or two analog signals and still achieve an improvement in the
combined signal.
[0033] Although the invention in the foregoing description of a preferred embodiment has
been explained as implemented in a hearing aid, the invention is applicable to other
types of personal communication equipment, such as headsets and mobile telephones.
1. A hearing aid (1) comprising: a first microphone (3) adapted to pick up acoustic signals
from the environment and transform these into a first electrical signal, first signal
processing means (4) for processing the first electrical signal, second signal generating
means (6) for generating a second electrical signal and output means (8), where the
output means (8) comprises an output transducer (8), characterised in that the output transducer (8) comprises a membrane (10) and a first and a second driving
coil (7, 9), the first driving coil (7) being adapted to generate a first magnetic
field in correspondence with the processed first electrical signal, the second driving
coil (9) being adapted to generate a second magnetic field in correspondence with
the second electrical signal, and the membrane (10) being adapted to be driven by
the first and the second magnetic fields, thereby generating an acoustic output signal
representing a sum of the processed first electrical signal and the second electrical
signal.
2. A hearing aid (1) according to claim 1, where a further microphone (11) is provided
for picking up a further acoustic signal.
3. A hearing aid (1) according to claim 1 or 2, where a processor (4, 12) is provided
for establishing one or more characteristics of an incoming signal.
4. A hearing aid (1) according to any of the claims 1-3, where the first microphone (3)
is adapted to pick up acoustic signals outside the ear of the hearing aid user.
5. A hearing aid (1) according to any of the claims 1-4, further comprising means (12)
for processing the second electrical signal as an analog signal.
6. A hearing aid (1) according to any of the claims 1-5, further comprising means (4)
for processing the first electrical signal as a digital signal.
7. A hearing aid (1) according to any of the claims 1-6, where the second signal generating
means (6) comprises a second microphone (11) and a second signal processor (12).
1. Hörgerät (1) aufweisend: ein erstes Mikrofon (3), das ausgebildet ist akustische Signale
aus der Umgebung aufzunehmen und diese in ein erstes elektrisches Signal umzuwandeln,
erste Signalverarbeitungsmittel (4) zum Verarbeiten des ersten elektrischen Signals,
zweite Signalerzeugungsmittel (6) zum Erzeugen eines zweiten elektrischen Signals
und Ausgabemittel (8), wobei die Ausgabemittel (8) einen Ausgangswandler (8) aufweisen,
dadurch gekennzeichnet, dass der Ausgangswandler (8) eine Membran (10) und eine erste und eine zweite Antriebsspule
(7, 9) aufweisen, wobei die erste Antriebsspule (7) ausgebildet ist ein erstes magnetisches
Feld entsprechend dem verarbeiteten ersten elektrischen Signal zu erzeugen, die zweite
Antriebsspule (9) ausgebildet ist ein zweites magnetisches Feld entsprechend dem zweiten
elektrischen Signal zu erzeugen, und die Membran (10) ausgebildet ist durch das erste
und das zweite magnetische Feld angetrieben zu werden, wodurch ein eine Summe des
verarbeiteten ersten elektrischen Signals und des zweiten elektrischen Signals darstellendes
akustisches Ausgabesignal erzeugt wird.
2. Hörgerät (1) gemäß Anspruch 1, wobei ein weiteres Mikrofon (11) zum Aufnehmen eines
weiteren akustischen Signals vorgesehen ist.
3. Hörgerät (1) gemäß Anspruch 1 oder 2, wobei ein Prozessor (4, 12) zum Festlegen eines
oder mehrerer Kennzeichen eines eingehenden Signals vorgesehen ist.
4. Hörgerät (1) gemäß einem der Ansprüche 1 bis 3, wobei das erste Mikrofon (3) ausgebildet
ist, akustische Signale außerhalb des Ohres des Hörgerätenutzers aufzunehmen.
5. Hörgerät (1) gemäß einem der Ansprüche 1 bis 4, weiterhin aufweisend Mittel (12) zum
Verarbeiten des zweiten elektrischen Signals als ein analoges Signal.
6. Hörgerät (1) gemäß einem der Ansprüche 1 bis 5, weiterhin aufweisend Mittel (4) zum
Verarbeiten des ersten elektrischen Signals als ein digitales Signal.
7. Hörgerät (1) gemäß einem der Ansprüche 1 bis 6, wobei die zweiten Signalerzeugungsmittel
(6) ein zweites Mikrofon (11) und einen zweiten Signalprozessor (12) aufweisen.
1. Une prothèse auditive (1) comprenant : un premier microphone (3) apte à capter des
signaux acoustiques de l'environnement et à les transformer en un premier signal électrique,
un premier moyen de traitement de signal (4) pour traiter le premier signal électrique,
un second moyen de génération de signal (6) pour générer un second signal électrique
et un moyen de sortie (8), où le moyen de sortie (8) comprend un transducteur de sortie
(8), caractérisé en ce que le transducteur de sortie (8) comprend une membrane (10) et une première et une deuxième
bobine d'entraînement, la première bobine d'entraînement (7) étant apte à générer
un premier champ magnétique en correspondance avec le premier signal électrique traité,
la seconde bobine d'entraînement (9) étant apte à générer un deuxième champ magnétique
en correspondance avec le second signal électrique, et la membrane (10) étant apte
à être entraînée par les premier et second champs magnétiques, générant ainsi un signal
de sortie acoustique représentant une somme du premier signal électrique traité et
du second signal électrique.
2. Une prothèse auditive (1) selon la revendication 1, où un autre microphone (11) est
fourni pour capter un autre signal acoustique.
3. Une prothèse auditive (1) selon la revendication 1 ou 2, où un processeur (4, 12)
est fourni pour établir une ou plusieurs caractéristiques d'un signal entrant.
4. Une prothèse auditive (1) selon l'une quelconque des revendications 1 à 3, où le premier
microphone (3) est apte à capter des signaux acoustiques à l'extérieur de l'oreille
de l'utilisateur de la prothèse auditive.
5. Une prothèse auditive (1) selon l'une quelconque des revendications 1 à 4, comprenant
en outre un moyen (12) pour traiter le second signal électrique comme un signal analogique.
6. Une prothèse auditive (1) selon l'une quelconque des revendications 1 à 5, comprenant
en outre un moyen (4) pour traiter le premier signal électrique comme un signal numérique.
7. Une prothèse auditive (1) selon l'une quelconque des revendications 1 à 6, où le second
moyen de génération de signal (6) comprend un second microphone (11) et un second
processeur de signal (12).
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description