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EP 2 931 389 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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17.10.2018 Bulletin 2018/42 |
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Date of filing: 09.12.2013 |
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International Patent Classification (IPC):
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International application number: |
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PCT/AU2013/001429 |
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International publication number: |
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WO 2014/089606 (19.06.2014 Gazette 2014/25) |
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CYCLING TRAINING DEVICE
ZIRKELTRAININGSVORRICHTUNG
DISPOSITIF D'ENTRAÎNEMENT CYCLISTE
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Designated Contracting States: |
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AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL
NO PL PT RO RS SE SI SK SM TR |
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Priority: |
12.12.2012 AU 2012905432
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Date of publication of application: |
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21.10.2015 Bulletin 2015/43 |
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Proprietor: Freiberg, Michael |
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Dianella, Western Australia 6059 (AU) |
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Inventor: |
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- Freiberg, Michael
Dianella, Western Australia 6059 (AU)
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Representative: Wildhack & Jellinek |
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Patentanwälte
Landstraßer Hauptstraße 50 1030 Wien 1030 Wien (AT) |
| (56) |
References cited: :
EP-A1- 1 473 219 WO-A2-2007/017739 GB-A- 2 485 216 US-A1- 2003 073 546 US-A1- 2011 126 143
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WO-A1-03/034584 DE-U1-202005 008 190 US-A1- 2002 055 422 US-A1- 2010 198 453
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- TYLER BENEDICT: 'Tech Breakdown-Wahoo Fitness Smartphone Powered Cycling Trainer &
Computer' BIKERUMOR.COM XP008179815 Retrieved from the Internet: <URL:http://www.bikerumor.com/2012/11/08/te
ch-breakdown-wahoo-fitness-smartphone-power ed-cycling-trainer-computer/>
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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).
|
FIELD OF THE INVENTION
[0001] The present invention relates to a Cycling Training Device (CTD) for use with a bicycle.
BACKGROUND
[0002] Virtual reality or terrain simulation cycling devices are available for stationary
or indoor use, and are commonly used when weather outdoors is undesirable. However,
many of these devices are used for terrain simulation or ride replication, when outside
weather may be pleasurable but the terrain does not suit the types of training desired.
[0003] For an improvement to be made, athletes must push themselves to a high percentage
of their VO
2 max to achieve performance gains. Cyclists training for an improvement in physiology
may face many problems when situated in areas of dense population.
[0004] As technology and training methodologies improve, athletes are beginning to reach
speeds that are unsafe or unviable to train at, in highly populated areas. As such,
many athletes commute to outer suburbs or mountain ranges before beginning training.
The push to maintain performance improvements has created drawbacks including adding
time taken to travel to areas of favourable terrain or, in more extreme scenarios,
unsafe riding practices.
[0005] It has been noted that recently there have been a number of incidents where a cyclist
travelling at high speed on a bike path has hit and killed a pedestrian. Other cases
of life altering accidents have occurred when cyclists travelling at high speeds in
opposite directions have collided with each other, leaving one or both of the riders
in a quadriplegic condition. Excessive speed in the pursuit of performance has been
a factor in both cases.
[0006] Unfavourable terrain and culture of outdoor activities has collided with the pursuit
of athletic excellence with less than desirable side effects.
[0007] Previous devices have attempted to increase rolling resistance or reducing the speed
of a bicycle through increases in friction forced acting on the bicycle. This poses
significant engineering limitations and a less than desirable user experience. Current
indoor applications that have been retrofitted for an outdoor application, are found
to be wanting, as all require a friction roller. Experience has shown that the friction
roller is likely to fail when exposed to sand, dirt or water present in outdoor conditions.
[0008] Other attempts to slow a moving bicycle for training purposes have had their own
significant drawbacks. These include: unmeasurable resistance levels, the inability
to vary and to switch on or off resistance, and ultimately undesirable resistance
curves that may be of detriment to the athlete.
[0009] One previous attempt to slow the speed of a bicycle for training purposes comprised
a device known as the "slow wheel". There are many design flaws and limitations to
this device, the largest being that resistance is achieved through mechanical friction,
with only a few levels of mechanical resistance.
[0010] The present invention attempts to overcome at least in part the aforementioned disadvantages
of previous bicycle resistance devices. Document
GB-A-2485216 describes an electric pedal cycle and document
US-A-2003/0073546 describes a self-powered variable resistance bicycle trainer.
SUMMARY OF THE INVENTION
[0011] In accordance with one aspect of the present invention there is provided a cycling
training device comprising an electronic control unit and a variable resistance unit
as claimed in claim 1. The additional features are defined in the appended claims.
BRIEF DESCRIPTION OF DRAWINGS
[0012] The present invention will now be described, by way of example, with reference to
the accompanying drawings, in which:
Figure 1 is a top view of the electronic control unit and associated display in accordance
with one aspect of the present invention.
Figure 2 is a block diagram of the electrical components of variable resistance unit
in accordance with another aspect of the preferred invention.
Figure 3 is a block diagram of the cycling training device in accordance with a preferred
embodiment of the present invention.
DESCRIPTION OF THE PREFERRED EMBODIMENT
[0013] Referring to the Figures, there is shown a Cycling Training Device (CTD) 10 for use
with a bicycle. The CTD 10 comprises an electronic control unit 14 and a variable
resistance unit 16.
[0014] The electronic control unit 14 is preferably arranged to be mounted on a bicycle
where it is easily seen and interacted with by a rider of the bicycle. In accordance
with one preferred embodiment of the present invention the electronic control unit
14 is afforded a mounting so as to be mounted on the handle bars of the bicycle.
[0015] The electronic control unit 14 preferably comprises a display 18, a plurality of
buttons 19 for user input as well as control electronics for controlling the operation
of the CTD.
[0016] The electronic control unit 14 preferably also comprises an electronic communication
means, preferably the communication means is capable of both wireless and/or wired
forms of communication. Preferred wireless forms of communication may comprise but
not be limited to Ant+, Bluetooth or 802.1 IX networks. Preferred wired forms of communication
may comprise USB, serial or parallel connections.
[0017] In accordance with another preferred embodiment of the present invention the electronic
control unit may be a mobile computing device such as a smart phone. The control may
be achieved or accessed through an app or other software operating on the mobile computing
device.
[0018] In accordance with yet another preferred embodiment of the present invention, the
display 18 and the buttons 19 may be integrated into a touch screen device.
[0019] The communication means may be arranged to communicate with a plurality of biometric
sensor means 38. The biometric sensor means 38 being arranged to provide biometric
information from the rider of the bicycle. The types of biometric information to be
relayed to the electronic control unit 14 include but are not limited to heart rate,
blood pressure, respiration rates and hydration levels.
[0020] Figure 2 shows a block diagram of the variable resistance unit 16 in accordance with
a preferred embodiment of the present invention. The variable resistance unit 16 comprises
a means for imparting Electro-Magnetic Force (EMF) in this case an alternator 25,
a 3-phase rectifier 26, a DC filter 28, a DC/DC converter 30, a Pulse Width Modulation
(PWM) controller 32 and a load 34. The variable resistance unit 16 is connected to
the electronic control unit 14, via the communications means, the operation of the
variable control unit 16 being affected by the electronic control unit 14.
[0021] Preferably, the variable resistance unit 16 further comprises a plurality of sensor
means 36. The sensor means 36 are arranged to be able to determine physical and electrical
characteristics of the variable resistance unit 16. The sensor means 36 preferably
are arranged to sense at least one of, the electrical resistance of the variable resistance
unit, the electrical impedance, temperature, voltage output, current output, rotational
speed and rotational moment.
[0022] The sensor means 36 may further comprise at least one strain gauge, the strain gauge
being arranged to measure the instantaneous torque or moment being generated by the
user. The instantaneous torque and the rotational speed of the variable resistance
unit 16 may be used to determine the instantaneous power output of the user.
[0023] The variable resistance unit 16 is preferably capable of acting as a generator during
part of its normal operation as well as being capable as acting as a motor during
other parts of its operation.
[0024] The variable resistance unit 16 is preferably arranged within the hub of a wheel
of the bicycle. However, any known arrangement of an electrically driven wheel may
be suitable. The variable resistance unit 16 may be arranged on either the front or
rear wheel of the bicycle.
[0025] It should be appreciated that the alternator may be replaced with any controllable
means for imparting EMF capable of effecting the rolling resistance of the wheel to
which it is engaged. Such means include but are not limited to magnetic braking, DC
motors, eddy current brakes, homopolar generators, choke devices or slotted or unslotted
motors.
[0026] In accordance with another preferred embodiment of the present invention the variable
resistance unit 16 comprises an eddy current brake. The eddy current brake operates
in unison with a disc attached to the wheel of a bicycle. The eddy current brake when
powered acts to inhibit the motion of the disc through the brake, therein effectively
controlling the rolling resistance of the wheel to which it is attached.
[0027] In use, the CTD is fitted to a bicycle, preferably the variable resistance device
16 being arranged on the hub of the front wheel. The electronics control unit 14 is
arranged such that the user can see the display 18 and access the plurality of buttons
19, normally on the handle bars of the bicycle.
[0028] The user then may select the mode of operation of the CTD 10 using the buttons 19
to select from the various menu options shown on the display 18. The user would first
select a user profile which is associated with each separate user of the CTD. The
user would then select from the training programme which is currently available on
the device. In accordance with the training programme chosen the electronic control
unit 14 will communicate with the variable drive unit 16 to control its operation,
varying the effective rolling resistance of the bicycle.
[0029] In accordance with a preferred embodiment of the present invention, the effective
rolling resistance of the variable resistance unit 16 is varied in accordance with
a user profile for an interval training programme. The training programme may be varied
in terms of the interval time, the interval gradient, recovery time, recovery gradient,
number of repetitions.
[0030] Preferably, the training programme will be varied in response to biometric parameters
detected by the biometric sensor means 38. For example, if the heart or respiration
rate of the user are detected as being outside of an acceptable range, the effective
rolling resistance will be varied to ensure that the user is exercising in the targeted
zone.
[0031] Preferably, the training programme will be varied in accordance with the number of
times it has been completed.
[0032] In accordance with another preferred embodiment of the present invention, the effective
rolling resistance of the variable resistance unit 16 is varied in accordance with
a user profile for a terrain profile training programme. The effective rolling resistance
is varied such that the user experiences the same pedal load as they would if they
were actually riding the bicycle along the terrain represented in the profile.
[0033] As the rider completes sections of the terrain profile, their relative position along
the terrain profile is displayed on the display unit 18.
[0034] Preferably, the terrain profile may match the terrain profile of a real world location,
such that the user could for example ride the first stage of the Tour de France, by
simulating the terrain profile.
[0035] In accordance with another preferred embodiment of the present invention, the effective
rolling resistance of the variable resistance unit 16 is varied in accordance with
a user profile for a computer generated training programme. The rider is able to enter
their performance goals and current abilities, before a computer generated programme
is generated for them.
[0036] In accordance with another preferred embodiment of the present invention, the effective
rolling resistance of the variable resistance unit 16 is varied in accordance with
a user profile for the user's heart rate. The biometric sensor means 38 provide biometric
data on the user's current heart and respiration rates. The control means 14 varies
the effective rolling resistance of the variable resistance unit 16 to ensure that
the user's heart and respiration rates are within a targeted range.
[0037] In accordance with another preferred embodiment of the present invention, the effective
rolling resistance of the variable resistance unit 16 is varied in accordance with
a user profile for a resistance curve. The resistance curve being programmable by
the user and may be based upon at least one of wattage, speed, approach graph, linear,
logarithmic, exponential, polynomial graph parameters.
[0038] In accordance with another preferred embodiment of the present invention, the effective
rolling resistance of the variable resistance unit 16 is varied in accordance with
a user profile and a spin scan analysis. The sensor mean 36 are used to determine
the instantaneous power produced throughout the revolution of the pedals of the bicycle.
A common problem in cyclists is pedalling dominance, where one leg becomes more powerful
than the other, leading to imbalance in the cycle.
[0039] By varying the effective rolling resistance during the pedal cycle pedalling dominance
can be altered to ensure that the user is supplying even power through their cycle.
Advantageously, this has the effect of reducing injuries to the rider.
[0040] The user will then engage the CTD and start their training session. The user triggers
operation of the CTD through the plurality of buttons 19 on the control unit 14. Once
the CTD is activated, the electronic control unit 14 will control the operation of
the variable resistance unit 16.
[0041] The variable resistance unit 16 operates by having the alternator, generate electrical
power. The alternator generates an alternating electrical current (AC) through the
motion in its internal components. The AC output of the alternator passes through
a 3 phase rectifier 26 which converts the AC power into direct current (DC). The resulting
DC power is then filtered by DC filter 28. Some of the DC power is transferred to
a DC/DC convertor 30 and finally to the electronic control unit 14. The remaining
DC power is transferred to PWM control circuit 32 and finally the load 34.
[0042] As will be apparent to the skilled addressee, the amount of power drawn by the alternator
can vary in accordance to changes in the electrical characteristics of the load 34.
[0043] In accordance with a preferred embodiment of the present invention, the load 34 comprises
a heat sink with additional current generated being 'sunk' into the heat sink when
excessive charge is generated.
[0044] The power drawn by the alternator will cause the user of the CTD to experience increased
resistance over and above that experienced during the normal operation of the bicycle.
The effective rolling resistance that the user encounters during operation of the
bicycle with a CTD will match the output profile in accordance with the terrain profile
or the user's training schedule.
[0045] In accordance with a preferred embodiment of the present invention, the effective
resistance of the load 34 is constantly calculated by the sensor means 36 within the
load 34. The effective resistance of the load 34 is temperature dependent and therefore
must constantly be determined to ensure that the effective rolling resistance and
the effective power are correctly calculated.
[0046] In accordance with a preferred embodiment of the present invention the load 34 further
comprises a means for the storing of electrical energy. The means for storing electrical
energy may be configured to act as a power source for the variable resistance unit
16 as required.
[0047] As will be apparent to the skilled addressee there will be situations wherein the
actual rolling resistance that the user encounters during the normal operation of
the bicycle is greater than the effective rolling resistance required at that point
in the terrain profile or the training schedule.
[0048] In these instances power is drawn from the load 34 to power the variable resistant
unit as a motor. The motor effectively acts to reduce the effective resistance the
user of the CTD 10 is experiencing.
[0049] In this manner the effective rolling resistance that the user of the CTD 10 experiences
changes in accordance with the terrain profile or training schedule uploaded to the
control unit, with the CTD 10 being able to change the effective resistance regardless
of the effective resistance that the user would actually encounter due to the terrain
that they are actually travelling over.
[0050] In accordance with a preferred embodiment of the present invention the electronic
control unit 14 will display to the user if they are meeting the required output in
accordance with the terrain profile or training schedule loaded into the unit. The
electronic control unit 14, and more specifically the display 18, display to the user
if their present output matches the required output to meet their training schedule.
[0051] The display unit 18 may also display other metrics about the user's performance.
In accordance with other preferred embodiments of the present invention, the electronic
control unit 14 may comprise additional sensors 38 that allow biometric feedback from
the user to be displayed such as the user heart rate, respiration rate or the number
of calories that have been consumed in the present training session.
[0052] In accordance with one embodiment of the present invention, information regarding
previous training sessions may also by transferred to a personal computer allowing
for analysis of the user's previous performance. Once the required information is
transferred to the CTD 10 the user may terminate the connection between the communication
means and the personal computer.
[0053] In accordance with a preferred embodiment of the present invention, the CTD 10 may
be connected to a personal computer via the communication means. Additional training
programmes may be downloaded to the CTD 10. Further, the personal computer may be
used to generate training programmes based on the previous performance of the user.
[0054] Modifications and variations as would be apparent to a skilled addressee are deemed
to be within the scope of the present invention.
1. A cycling training device comprising an electronic control unit (14) and a variable
resistance unit (16) for a bicycle characterized in that
the variable resistance unit comprises an electrical load (34) and the electrical
load (34) comprises a heat sink, and the variable resistance unit (16) is mountable
in a wheel of the bicycle, such that the effective rolling resistance of the bicycle
is electronically variable whilst the bicycle is ridden a physical distance on a real
terrain.
2. A cycling training device in accordance with claim 1, characterised in that the effective rolling resistance is varied in accordance with a user's training programme.
3. A cycling training device in accordance with claim 1 or 2, characterised in that the electronic control unit (14) further comprises a communication means.
4. A cycling training device in accordance with claim 3, characterised in that the communication means further comprises a wireless means of communicating with
the variable resistance unit (16).
5. A cycling training device in accordance with claim 3, characterised in that the communication means further comprises a wireless means of communicating with
a personal computer.
6. A cycling training device in accordance with any one of the preceding claims, characterised in that the electronic control unit (14) is a mobile computing device.
7. A cycling training device in accordance with any one of the preceding claims, characterised in that the cycling training device further comprises at least one biometric sensor means
(38) arranged to capture biometric data from the user such as heart rate or respiration
data.
8. A cycling training device in accordance with claim 1, characterised in that the variable resistance unit (16) comprises a means of imparting Electro-Magnetic
Force (EMF) capable of affecting the rolling resistance of the wheel.
9. A cycling training device in accordance with claim 8, characterised in that the means of imparting EMF comprises an alternator (25) or an eddy current brake.
10. A cycling training device in accordance with claim 8, characterised in that the variable resistance unit (16) further comprises means for rectifying alternating
current.
11. A cycling training device in accordance with claim 8, characterised in that the variable resistance unit (16) further comprises a DC filter (28) or a DC converter.
12. A cycling training device in accordance with claim 8, characterised in that the variable resistance unit (16) further comprises a Pulse Width Modulation (PWM)
controller (32).
13. A cycling training device in accordance with claim 8, characterised in that the variable resistance unit (16) further comprises a sensor means (36) arranged
to measure physical and electrical characteristics of the variable resistance unit
(16).
14. A cycling training device in accordance with claim 8, characterised in that the variable resistance unit (16) is arranged to generate electricity or to act as
a motor during part of its normal operation.
15. A cycling training device in accordance with claim 12, characterised in that the electrical load (34) comprises a means for storing electrical energy.
16. A cycling training device in accordance with claim 13, characterised in that the sensor means (36) are arranged to measure at least one of: electrical resistance,
electrical impedance, voltage output and current output.
17. A cycling training device in accordance with claim 13, characterised in that the sensor means (36) are arranged to measure at least one of: temperature, rotational
speed and rotational moment.
18. A cycling training device in accordance with claim 16, characterised in that the sensor means (36) is connected to a calculation means that constantly calculates
the electrical resistance of the load the electrical resistance of the load then being
communicated to the electronic control unit (14) to ensure correct operation of the
variable resistance unit (16).
19. A cycling training device in accordance with any one of the preceding claims, characterised in that the variable resistance unit (16) is arranged on a rear wheel of the bicycle.
1. Fahrradtrainingsvorrichtung, die eine elektronische Steuereinheit (14) und eine variable
Widerstandseinheit (16) für ein Fahrrad umfasst,
dadurch gekennzeichnet, dass
die variable Widerstandseinheit eine elektrische Last (34) umfasst und die elektrische
Last (34) eine Wärmesenke umfasst und die variable Widerstandseinheit (16) in einem
Rad des Fahrrads montierbar ist, sodass der effektive Rollwiderstand des Fahrrades
elektronisch variabel ist, während das Fahrrad in einem realen Gelände eine physische
Distanz zurückgelegt.
2. Fahrradtrainingsvorrichtung nach Anspruch 1, dadurch gekennzeichnet, dass der effektive Rollwiderstand in Übereinstimmung mit dem Trainingsprogramm eines Benutzers
variiert wird.
3. Fahrradtrainingsvorrichtung nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass die elektronische Steuereinheit (14) weiter ein Kommunikationsmittel umfasst.
4. Fahrradtrainingsvorrichtung nach Anspruch 3, dadurch gekennzeichnet, dass das Kommunikationsmittel weiter ein drahtloses Mittel zum Kommunizieren mit der variablen
Widerstandseinheit (16) umfasst.
5. Fahrradtrainingsvorrichtung nach Anspruch 3, dadurch gekennzeichnet, dass das Kommunikationsmittel weiter ein drahtloses Mittel zum Kommunizieren mit einem
Personal-Computer umfasst.
6. Fahrradtrainingsvorrichtung nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass die elektronische Steuereinheit (14) eine mobile Rechenvorrichtung ist.
7. Fahrradtrainingsvorrichtung nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass die Fahrradtrainingsvorrichtung weiter mindestens ein biometrisches Sensormittel
(38) umfasst, das angeordnet ist, um biometrische Daten von dem Benutzer, wie Herzfrequenz-
oder Atmungsdaten, zu erfassen.
8. Fahrradtrainingsvorrichtung nach Anspruch 1, dadurch gekennzeichnet, dass die variable Widerstandseinheit (16) ein Mittel zum Übertragen einer elektromagnetischen
Kraft (EMF) umfasst, das in der Lage ist, den Rollwiderstand des Rads zu beeinflussen.
9. Fahrradtrainingsvorrichtung nach Anspruch 8, dadurch gekennzeichnet, dass das Mittel zum Übertragen von EMF einen Wechselstromgenerator (25) oder eine Wirbelstrombremse
umfasst.
10. Fahrradtrainingsvorrichtung nach Anspruch 8, dadurch gekennzeichnet, dass die variable Widerstandseinheit (16) weiter Mittel zum Gleichrichten von Wechselstrom
umfasst.
11. Fahrradtrainingsvorrichtung nach Anspruch 8, dadurch gekennzeichnet, dass die variable Widerstandseinheit (16) weiter ein Gleichstromfilter (28) oder einen
Gleichstromwandler umfasst.
12. Fahrradtrainingsvorrichtung nach Anspruch 8, dadurch gekennzeichnet, dass die variable Widerstandseinheit (16) weiter eine Pulsbreitenmodulations-(PWM)-Steuerung
(32) umfasst.
13. Fahrradtrainingsvorrichtung nach Anspruch 8, dadurch gekennzeichnet, dass die variable Widerstandseinheit (16) weiter ein Sensormittel (36) umfasst, das angeordnet
ist, um physikalische und elektrische Eigenschaften der variablen Widerstandseinheit
(16) zu messen.
14. Fahrradtrainingsvorrichtung nach Anspruch 8, dadurch gekennzeichnet, dass die variable Widerstandseinheit (16) angeordnet ist, um Elektrizität zu erzeugen
oder während eines Teils ihres normalen Betriebs als Motor zu wirken.
15. Fahrradtrainingsvorrichtung nach Anspruch 12, dadurch gekennzeichnet, dass die elektrische Last (34) ein Mittel zum Speichern von elektrischer Energie umfasst.
16. Fahrradtrainingsvorrichtung nach Anspruch 13, dadurch gekennzeichnet, dass die Sensormittel (36) angeordnet sind, um mindestens einen der folgenden Werte zu
messen: elektrischer Widerstand, elektrische Impedanz, Spannungsausgang und Stromausgang.
17. Fahrradtrainingsvorrichtung nach Anspruch 13, dadurch gekennzeichnet, dass die Sensormittel (36) angeordnet sind, um mindestens eines von Folgendem zu messen:
Temperatur, Drehzahl und Drehmoment.
18. Fahrradtrainingsvorrichtung nach Anspruch 16, dadurch gekennzeichnet, dass das Sensormittel (36) mit einem Berechnungsmittel verbunden ist, das konstant den
elektrischen Widerstand der Last berechnet, wobei der elektrische Widerstand der Last
dann an die elektronische Steuereinheit (14) übermittelt wird, um einen korrekten
Betrieb der variablen Widerstandseinheit (16) zu gewährleisten.
19. Fahrradtrainingsvorrichtung nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass die variable Widerstandseinheit (16) an einem Hinterrad des Fahrrades angeordnet
ist.
1. Dispositif d'entraînement cycliste comprenant une unité de commande électronique (14)
et une unité à résistance variable (16) pour une bicyclette, caractérisé en ce que l'unité à résistance variable comprend une charge électrique (34) et la charge électrique
(34) comprend un dissipateur de chaleur, et l'unité à résistance variable (16) peut
être montée dans une roue de la bicyclette, de sorte que la résistance au roulement
effective de la bicyclette peut être modifiée électroniquement tandis que la bicyclette
est montée sur une distance physique sur un terrain réel.
2. Dispositif d'entraînement cycliste selon la revendication 1, caractérisé en ce que la résistance au roulement effective est modifiée conformément à un programme de
d'entraînement d'utilisateur.
3. Dispositif d'entraînement cycliste selon la revendication 1 ou 2, caractérisé en ce que l'unité de commande électronique (14) comprend en outre des moyens de communication.
4. Dispositif d'entraînement cycliste selon la revendication 3, caractérisé en ce que les moyens de communication comprennent en outre un dispositif de communication sans
fil avec l'unité à résistance variable (16).
5. Dispositif d'entraînement cycliste selon la revendication 3, caractérisé en ce que les moyens de communication comprennent en outre un dispositif de communication sans
fil avec un ordinateur personnel.
6. Dispositif d'entraînement cycliste selon l'une quelconque des revendications précédentes,
caractérisé en ce que l'unité de commande électronique (14) est un dispositif de calcul mobile.
7. Dispositif d'entraînement cycliste selon l'une quelconque des revendications précédentes,
caractérisé en ce que le dispositif d'entraînement cycliste comprend en outre au moins des moyens de capteur
biométrique (38) agencés pour capturer des données biométriques de l'utilisateur telles
que des données de fréquence cardiaque ou de respiration.
8. Dispositif d'entraînement cycliste selon la revendication 1, caractérisé en ce que l'unité à résistance variable (16) comprend des moyens pour imprimer une force électromagnétique
(EMF) capables d'affecter la résistance au roulement de la roue.
9. Dispositif d'entraînement cycliste selon la revendication 8, caractérisé en ce que les moyens pour imprimer une EMF comprennent un alternateur (25) ou un frein à courant
de Foucault.
10. Dispositif d'entraînement cycliste selon la revendication 8, caractérisé en ce que l'unité à résistance variable (16) comprend en outre des moyens pour redresser un
courant alternatif.
11. Dispositif d'entraînement cycliste selon la revendication 8, caractérisé en ce que l'unité à résistance variable (16) comprend en outre un filtre CD (28) ou un convertisseur
CD.
12. Dispositif d'entraînement cycliste selon la revendication 8, caractérisé en ce que l'unité à résistance variable (16) comprend en outre un dispositif de commande (32)
à modulation de largeur d'impulsion (PWM).
13. Dispositif d'entraînement cycliste selon la revendication 8, caractérisé en ce que l'unité à résistance variable (16) comprend en outre des moyens de capteur (36) agencés
pour mesurer des caractéristiques physiques et électriques de l'unité à résistance
variable (16).
14. Dispositif d'entraînement cycliste selon la revendication 8, caractérisé en ce que l'unité à résistance variable (16) est agencée pour générer de l'électricité ou pour
agir comme un moteur pendant une partie de son fonctionnement normal.
15. Dispositif d'entraînement cycliste selon la revendication 12, caractérisé en ce que la charge électrique (34) comprend des moyens pour stocker de l'énergie électrique.
16. Dispositif d'entraînement cycliste selon la revendication 13, caractérisé en ce que les moyens de capteur (36) sont agencés de façon à mesurer au moins un élément parmi
: une résistance électrique, une impédance électrique, une sortie de tension et une
sortie de courant.
17. Dispositif d'entraînement cycliste selon la revendication 13, caractérisé en ce que les moyens de capteur (36) sont agencés pour mesurer au moins un élément parmi :
la température, la vitesse de rotation et le moment de rotation.
18. Dispositif d'entraînement cycliste selon la revendication 16, caractérisé en ce que les moyens de capteur (36) sont connectés à des moyens de calcul qui calculent constamment
la résistance électrique de la charge, la résistance électrique de la charge étant
ensuite communiquée à l'unité de commande électronique (14) pour assurer un fonctionnement
correct de l'unité à résistance variable (16).
19. Dispositif d'entraînement cycliste selon l'une quelconque des revendications précédentes,
caractérisé en ce que l'unité à résistance variable (16) est disposée sur une roue arrière de la bicyclette.
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