Braking device for a bicycle and braking system for a bicycle
11491958 · 2022-11-08
Inventors
Cpc classification
B60T8/1706
PERFORMING OPERATIONS; TRANSPORTING
B60T2210/36
PERFORMING OPERATIONS; TRANSPORTING
B60T7/16
PERFORMING OPERATIONS; TRANSPORTING
B62M6/45
PERFORMING OPERATIONS; TRANSPORTING
F16D61/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60T2250/00
PERFORMING OPERATIONS; TRANSPORTING
B60T1/10
PERFORMING OPERATIONS; TRANSPORTING
B60T13/586
PERFORMING OPERATIONS; TRANSPORTING
B62M6/40
PERFORMING OPERATIONS; TRANSPORTING
B60T2220/02
PERFORMING OPERATIONS; TRANSPORTING
B62L3/00
PERFORMING OPERATIONS; TRANSPORTING
B60T2210/10
PERFORMING OPERATIONS; TRANSPORTING
B62M6/65
PERFORMING OPERATIONS; TRANSPORTING
B60T7/12
PERFORMING OPERATIONS; TRANSPORTING
B60T2201/02
PERFORMING OPERATIONS; TRANSPORTING
B60T2250/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60T8/17
PERFORMING OPERATIONS; TRANSPORTING
B60T7/16
PERFORMING OPERATIONS; TRANSPORTING
B62L3/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A bicycle braking system includes a server, a portable device such as a smartphone, a display unit, a control unit, a power supply unit, a rotating electrical machine, and a bicycle. The portable device includes an image display unit, a braking condition transmitting unit, and a braking condition setting unit. The control unit regeneratively brakes the bicycle using the rotating electrical machine in accordance with the braking condition set by the braking condition setting unit. The braking system enables a non-user to set braking conditions for the bicycle and to perform braking based on the conditions set by the non-user.
Claims
1. A braking system for enabling a parent or guardian to control the speed of a bicycle being ridden by a child, comprising: a portable device including an image display unit which displays a plurality of braking conditions for selection by a user of the portable device to be applied to a bicycle, the portable device not being located on the bicycle and being operable by the user of the portable device to select one or more of the displayed braking conditions, a braking condition setting unit which stores the one or more braking conditions selected by the user of the portable device, and a wireless communication unit for wireless transmission of the one or more selected braking conditions stored in the braking condition setting unit to outside of the portable device, each displayed braking condition specifying a type of physical location on which the bicycle can travel and a speed limit associated with the type of physical location, the plurality of displayed braking conditions including a braking condition for sidewalks and a braking condition for intersections, the braking condition for sidewalks specifying a speed limit for when the bicycle is on a sidewalk and the braking condition for intersections specifying a speed limit for when the bicycle is at an intersection; a control unit mounted on the bicycle and including a wireless communication unit for receiving the one or more braking conditions transmitted from the portable device, a storage unit containing map data, a position information specifying unit which specifies the current location of the bicycle and collates the current location of the bicycle with the map data in the storage unit to determine if one of the one or more braking conditions transmitted from the portable device is a corresponding braking condition which specifies a type of location corresponding to the current location of the bicycle, and a calculation unit which calculates the current speed of the bicycle and determines if the current speed exceeds the speed limit specified by the corresponding braking condition determined by the position information specifying unit; and a braking unit mounted on the bicycle for braking the bicycle, the control unit controlling the braking unit to brake the bicycle when the calculation unit determines that the current speed of the bicycle exceeds the speed limit specified by the corresponding braking condition determined by the position information specifying unit until the bicycle speed no longer exceeds the speed limit specified by the corresponding braking condition.
2. The braking system as claimed in claim 1 wherein the plurality of displayed braking conditions for selection by the user of the portable device include a braking condition for roadways which specifies a single speed limit for the bicycle when the bicycle is on any roadway.
3. The braking system as claimed in claim 1 wherein the braking condition for sidewalks specifies a speed limit which is the same for every sidewalk, and the braking condition for intersections specifies a speed limit which is the same for every intersection.
4. The braking system as claimed in claim 1, wherein the braking unit comprises a rotating electrical machine which performs regenerative braking, and the control unit performs regenerative control of the rotating electrical machine.
5. The braking system as claimed in claim 1, wherein the braking unit comprises a hydraulic disk brake.
6. The braking system as claimed in claim 1, further comprising a server which is wirelessly connected to the control unit of the braking system, wherein the control unit wirelessly transmits a traveling state of the bicycle to the server when the braking unit is braking the bicycle in accordance with one of the one or more braking conditions transmitted from the portable device to the control unit.
7. A method for remotely controlling the speed of a bicycle comprising: displaying on a portable device a plurality of braking conditions for selection by a user of the portable device to be applied to a bicycle, the portable device not being located on the bicycle; receiving user input into the portable device of a selection by the user of the portable device of one or more of the displayed braking conditions and wirelessly transmitting the one or more selected braking conditions to outside of the portable device, each displayed braking condition specifying a type of physical location on which the bicycle can travel and a speed limit associated with the type of physical location, the plurality of displayed braking conditions including a braking condition for sidewalks and a braking condition for intersections, the braking condition for sidewalks specifying a speed limit for when the bicycle is on a sidewalk and the braking condition for intersections specifying a speed limit for when the bicycle is at an intersection; wirelessly receiving the one or more braking conditions transmitted from the portable device by a control unit on the bicycle, specifying the current location of the bicycle by a position information specifying unit of the control unit and collating the current location of the bicycle with map data stored in a storage unit of the control unit, determining by the position information specifying unit if one of the one or more braking conditions transmitted to the control unit from the portable device is a corresponding braking condition which specifies a type of location corresponding to the current location of the bicycle, calculating the current speed of the bicycle by a calculation unit of the control unit and determining in the control unit if the current speed exceeds the speed limit specified by the corresponding braking condition determined by the position information specifying unit; and controlling with the control unit a braking unit mounted on the bicycle to brake the bicycle when the control unit determines that the current speed of the bicycle exceeds the speed limit specified by the corresponding braking condition determined by the position information specifying unit until the bicycle speed no longer exceeds the speed limit specified by the corresponding braking condition.
8. The method as claimed in claim 7 further comprising wirelessly transmitting a traveling state of the bicycle from the control unit to a server when the braking unit is braking the bicycle in accordance with one of the one or more braking conditions transmitted from the portable device to the control unit.
9. A method for remotely controlling the speed of a bicycle comprising: wirelessly transmitting one or more braking conditions for a bicycle from a portable device not located on the bicycle to a control unit on the bicycle, each braking condition specifying a type of physical location on which the bicycle can travel and a speed limit associated with the type of physical location, the one or more braking conditions being selected from a braking condition for sidewalks, a braking condition for intersections, and a braking condition for roadways, the braking condition for sidewalks specifying a single speed limit for when the bicycle is on any sidewalk, the braking condition for intersections specifying a single speed limit for when the bicycle is at any intersection, and the braking condition for roadways specifying a single speed limit for when the bicycle is on any roadway; wirelessly receiving in the control unit the one or more braking conditions transmitted from the portable device, specifying in the control unit the current location of the bicycle, collating in the control unit the current location of the bicycle with map data stored in the control unit, determining in the control unit if one of the one or more braking conditions transmitted to the control unit from the portable device is a corresponding braking condition which specifies a type of location corresponding to the current location of the bicycle, calculating in the control unit the current speed of the bicycle and determining in the control unit if the current speed exceeds the speed limit specified by the corresponding braking condition determined by the control unit; and controlling with the control unit a braking unit mounted on the bicycle to brake the bicycle when the control unit determines that the current speed of the bicycle exceeds the speed limit specified by the corresponding braking condition determined by the control unit until the bicycle speed no longer exceeds the speed limit specified by the corresponding braking condition.
10. The method as claimed in claim 9 further comprising wirelessly transmitting a traveling state of the bicycle from the control unit to a server when the braking unit is braking the bicycle in accordance with one of the one or more braking conditions transmitted from the portable device to the control unit.
11. The method as claimed in claim 7 wherein the control unit controls the braking unit to brake the bicycle without locking the wheels of the bicycle.
12. The method as claimed in claim 9 wherein the control unit controls the braking unit to brake the bicycle without locking the wheels of the bicycle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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MODES FOR CARRYING OUT THE INVENTION
(5) Embodiments will be described below with reference to the drawings.
(6) As shown in
(7) The server 4 functionally includes an information receiving unit 42. The server 4 can be configured by any of hardware, a DSP (Digital Signal Processor), and software. For example, when the server 4 is configured by software, the information receiving unit 42 is configured to include a CPU, a RAM, and a ROM. The information receiving unit 42 is realized by operating a program which is stored in a recording medium such as a RAM, a ROM, a hard disk, or a semiconductor memory.
(8) As shown in
(9) As shown in
(10) As shown in
(11) As shown in
(12) As shown in
(13) As shown in
(14) As shown in
(15) As shown in
(16) Next, an example of the processing performed by the control unit 8 during braking control will be described with reference to
(17) In step S1, the position information specifying unit 84 in the control unit 8 identifies the position of the bicycle 12 based on the condition set by the braking condition setting unit 65 and collates the position with the map information stored in the storage unit 86.
(18) In step S2, the control unit 8 judges whether the bicycle 12 is in the vicinity of an intersection by collating with the map. When the bicycle 12 is in the vicinity of an intersection (S2=YES), the control unit 8 proceeds from step S2 to step S3. When the bicycle 12 is not in the vicinity of an intersection (S2=NO), the control unit 8 proceeds from step S2 to step S1.
(19) In step S3, the control unit 8 judges whether the speed of the bicycle 12 is equal to or higher than the speed set by the braking condition setting unit 65. In the present embodiment, since the predetermined value is 3 km/h, if the speed of the bicycle 12 is 3 km/h or more (S3=YES), the control unit 8 proceeds from step S3 to step S4. On the other hand, if the speed of the bicycle 12 is lower than 3 km/h (S3=NO), the control unit 8 proceeds to step S1.
(20) In step S4, in order to brake the rotating electrical machine 10 regeneratively, the control unit 8 transmits the rotational speed of the rotating electrical machine 10 to the motor driver 90 by converting the rotational speed of the rotating electrical machine 10 to a control signal. In step S5, the control unit 8 transmits the speed and position of the bicycle 12 to the server 4 via the communication unit 82 and proceeds to step S6.
(21) In step S6, as a result of braking the rotating electrical machine 10 regeneratively, if the speed of the bicycle 12 has become equal to or lower than a predetermined value (S6=YES), the control unit 8 proceeds to step S1. In the present embodiment, when the speed of the bicycle 12 has become 3 km/h or less, the control unit 8 proceeds to step S1. On the other hand, if the speed of the bicycle 12 is higher than the predetermined speed in step S6 (S6=NO), the control unit 8 repeats the process of step S4 to continue regenerative braking. In the present embodiment, when the speed of the bicycle 12 is higher than 3 km/h, the control unit 8 repeats the process of step S4 to continue regenerative braking.
(22) In the case where the braking condition setting unit 65 is set to “the speed of the bicycle 12 will be limited to 5 km/h or less on sidewalks” or “the speed of the bicycle 12 will be limited to 10 km/h or less on roadways”, the process proceeds in the same manner as in the above-described steps.
(23) In this manner, since the control unit 8 controls the rotating electrical machine 10 based on the braking condition set by the portable device 6, for example, the guardian of the user of the bicycle 12 can operate the bicycle 12 under the braking condition set by the portable device 6. Thus, for example, the speed of the bicycle 12 at intersections can be automatically reduced. As a result, for example, the guardian of the user of the bicycle, such as a young person, can set the braking condition and operate the bicycle based on the braking condition. Therefore, it is possible to prevent an accident by operating the bicycle at a safe speed.
(24) When regenerative braking occurs in the rotating electrical machine 10 based on the braking condition, the control unit 8 sends information concerning the speed and the position of the bicycle 12 to the server 4. As a result, information such as a place where the speed of the bicycle 12 is too high is accumulated in the information receiving unit of the server 4. As a result, data for ascertaining dangerous points such as intersections, sidewalks, and roadways can be accumulated. The data can also be used to calculate an insurance premium rate for a bicycle when, for example, the server 4 is a server of an insurance company.
(25) Furthermore, since the rotating electrical machine 10 is used as the braking unit, the motor driver 90 can control rapid braking such that the front wheel 122 does not lock. As a result, it is possible to prevent the user from falling.
Other Embodiments
(26) (a) In the above embodiment, “intersections”, “sidewalks”, and “roadways” were given as examples, but the present invention is not limited to this mode, and various modifications can be made without departing from the gist of the invention. In particular, a plurality of embodiments and variations described in this specification can be freely combined as necessary.
(27) (b) In the above embodiment, the rotating electrical machine 10 is used as a braking unit, but a hydraulic disc brake, for example, may be used. In this case, the hydraulic pressure which is supplied to the braking unit is controlled by the control unit.
(28) (c) In the above embodiment, the speed of the bicycle 12 is displayed on the display unit 72, but the present invention is not limited to this mode, and, for example, the fact that braking is taking place according to the braking condition may be displayed.
(29) (d) In the above embodiment, the storage unit 86 and the calculation unit 88 are provided in the control unit 8, but the storage unit 86 and the calculation unit 88 may be provided in the server 4. Namely, in the above embodiment, the control unit 8 performs the processes from collation with the map information to conversion into a control signal, but these processes may be performed by the server 4. In order to perform the processes from collation with the map information to conversion into a control signal on the server 4, the braking condition is transmitted from the portable device 6 to the server 4, the position information of the bicycle 12 is transmitted from the control unit 8 to the server 4, and the control signal is transmitted from the server 4 to the control unit 8. This makes it possible to reduce the weight of the control unit 8.
EXPLANATION OF REFERENCE NUMERALS
(30) 2: Bicycle braking system 4: Server 8: Control unit 10: Rotating electrical machine 12: Bicycle 65: Braking condition setting unit 82: Communication unit 84: Position information specifying unit