DRIVING METHOD OF WHEELCHAIR POWER APPARATUS FOR ELECTRONIC DRIVING CONVERSION
20190380893 ยท 2019-12-19
Inventors
Cpc classification
International classification
Abstract
Disclosed is a driving method of a wheelchair power apparatus for electronic driving conversion. It is an object of the present invention to provide a wheelchair power apparatus for electronic driving conversion, which can provide severely disabled people, for instance, patients with spinal cord injury, the weak or the old, who use wheelchairs, with convenience in movement, and convert a manual four-wheel wheelchair into an electronic three-wheel wheelchair just by detachably mounting the electronic module having electronic wheels to the existing manual four-wheel wheelchair.
Claims
1. A driving method of a wheelchair power apparatus for electronic driving conversion comprising the steps of: (S110) preparing driving by supplying electric power; (S120) driving a wheelchair forwards while a steering unit mounted at an end of an operation handle rotates at a predetermined angle when a rider pulls the operation handle toward his or her chest, wherein a driving speed increases as a rotation angle of the steering unit increases gradually; (S130) when the rider removes the power to pull the operation handle during forward driving, returning the operation handle to its original position by restoring power of the coil spring mounted on the steering unit, and stopping the wheelchair while the operation handle is returned to its original position; (S140) changing the driving direction from a forward mode to a backward mode or from a backward mode to a forward mode when the rider pushes the operation handle forwards once in the state that the operation handle is returned to its original position during driving; and (S150) when the rider pulls the operation handle toward his or her chest in the state that the driving direction is changed into the backward mode, driving the wheelchair backwards while the steering unit mounted at the end of the operation handle rotates at a predetermined angle, wherein the driving speed increases as the rotation angle of the steering unit increases gradually.
2. A driving method of a wheelchair power apparatus for electronic driving conversion comprising the steps of: (S210) preparing driving by supplying electric power; (S220) driving a wheelchair forwards while a steering unit mounted at an end of an operation handle rotates at a predetermined angle when a rider pulls the operation handle toward his or her chest, wherein a driving speed increases as a rotation angle of the steering unit increases gradually; (S230) when the rider removes the power to pull the operation handle during forward driving, returning the operation handle to its original position by restoring power of the coil spring mounted on the steering unit, and stopping the wheelchair while the operation handle is returned to its original position; (S240) changing the driving direction from a forward mode to a backward mode or from a backward mode to a forward mode when the rider presses a driving direction change button in the state that the operation handle is returned to its original position during driving; and (S250) when the rider pulls the operation handle toward his or her chest in the state that the driving direction is changed into the backward mode, driving the wheelchair backwards while the steering unit mounted at the end of the operation handle rotates at a predetermined angle, wherein the driving speed increases as the rotation angle of the steering unit increases gradually.
3. A driving method of a wheelchair power apparatus for electronic driving conversion comprising the steps of: (S310) preparing driving by supplying electric power; (S320) changing a driving mode into a forward mode, and at the same time, driving a wheelchair forwards while a steering unit mounted at an end of an operation handle rotates at a predetermined angle when a rider pulls the operation handle toward his or her chest, wherein a driving speed increases as a rotation angle of the steering unit increases gradually; (S330) when the rider removes the power to pull the operation handle during forward driving, returning the operation handle to its original position by restoring power of the coil spring mounted on the steering unit, and stopping the wheelchair while the operation handle is returned to its original position; (S340) in the state that the operation handle is returned to its original position during driving, when the rider pulls the operation handle forwards, changing the driving mode into the backward mode, and driving the wheelchair backwards while the steering unit mounted at the end of the operation handle rotates at a predetermined angle, wherein the driving speed increases as the rotation angle of the steering unit increases gradually.
4. A driving method of a wheelchair power apparatus for electronic driving conversion comprising the steps of: (S410) preparing driving by supplying electric power; (S420) driving a wheelchair forwards while a steering unit mounted at an end of an operation handle rotates at a predetermined angle when a rider pulls the operation handle toward his or her chest, wherein a driving speed increases as a rotation angle of the steering unit increases gradually; (S430) when the rider removes the power to pull the operation handle during forward driving, returning the operation handle to its original position by restoring power of the coil spring mounted on the steering unit, and stopping the wheelchair while the operation handle is returned to its original position; (S440) changing the driving direction from a forward mode to a backward mode or from a backward mode to a forward mode when the rider presses a driving direction change button in the state that the operation handle is returned to its original position during driving; and (S450) when the rider pushes the operation handle toward his or her chest in the state that the driving direction is changed into the backward mode, driving the wheelchair backwards while the steering unit mounted at the end of the operation handle rotates at a predetermined angle, wherein the driving speed increases as the rotation angle of the steering unit increases gradually.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The above and other objects, features and advantages of the present invention will be apparent from the following detailed description of the preferred embodiments of the invention in conjunction with the accompanying drawings, in which:
[0012]
[0013]
[0014]
[0015]
[0016]
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[0018]
[0019]
[0020]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0021] Hereinafter, reference will be now made in detail to the preferred embodiment of the present invention with reference to the attached drawings. In the description of the present invention, when it is judged that detailed descriptions of known functions or structures and systems related with the present invention may make the essential points vague, the detailed descriptions of the known functions or structures will be omitted.
[0022]
[0023] The manual wheelchair 10 illustrated in
[0024]
[0025] The electronic module 30 includes: an operation wheel 33 in which an in-wheel motor 34 is mounted; a detachable battery 35 for supplying electric power; an operation handle 31 mounted directly above the battery 35 for allowing the rider to grip with the fingers or to put the palm or the wrist; and a connector 32 connected to the operation handle 31 so that the connector 32 can move in a forward or backward direction inside a steering housing 40.
[0026] Moreover, a fastener 36 is mounted directly below the steering housing 40. The fastener 36 is combined with the combining unit 22 in a one-touch way so that the electronic module 30 is easily mounted on the wheelchair 10.
[0027]
[0028] A first mounting recess 41 in which the steering unit 50 is located is formed at the central portion inside the steering housing 40, and a rotary shaft 42 protrudes at the center of the first mounting recess 41 and fit into a fitting hole 52 formed at the center of the steering unit 50 so as to be rotated smoothly within a predetermined angle in forward and backward directions in a state that the steering unit 50 is mounted inside the steering housing 40.
[0029] Elastic body seating recesses 51 are formed at right and left sides of the steering unit 50 to be symmetrical to the front and the back based on the fitting hole 52. The elastic body seating recess 51 is a space where an elastic body, such as a coil spring 53, is mounted. In the present invention, the elastic body is a coil spring 53, but shapes and kinds of the elastic body is not limited.
[0030] The connector 32 of the operation handle 31 is mounted on the steering unit 50. When the rider moves the operation handle 31 forwards or backwards, as illustrated by the reciprocating arrow {circle around (1)} in
[0031] As described above, the driving direction and speed of the electronic module 30 are maintained depending on movement of the steering unit 50 operated by the rider's power. When the power of the rider who pushes or pulls the steering unit 50 is removed, the steering unit 50 is restored into an initial state, namely, into a neutral condition by restoring force of the coil spring 53, and the electronic module 30 is in a braking state.
[0032] In the meantime, as shown in
[0033] Furthermore, as shown in
[0034] Detailed technical contents related with operations of the encoder 44 and the controller 37 have been well known, so the detailed description of the encoder and the controller will be omitted.
[0035]
[0036] Meanwhile, considering that the wheelchair having the electronic module is a detachable type, for long-distance movement, the manual wheelchair 10 is folded and loaded on a vehicle and the electronic module 30 and other coupling means are separated from the wheelchair and loaded on the vehicle. At a destination, the manual four-wheel wheelchair 10 is converted into the electronic three-wheel wheelchair 10, so the wheelchair according to the present invention provides vulnerable users with convenience in movement and enriches their lives.
[0037] Hereinafter, referring to
[0038]
[0039] As described above, when electric power is supplied, as indicated by the arrow number {circle around (1)} in
[0040] When the rider removes the power to pull the operation handle 31 toward the chest during forward driving, restoring power is generated from the coil spring 53 mounted on the steering unit 50 inside the steering housing 40, and the operation handle 31 is naturally restored in place. The wheelchair 10 stops as the encoder 44 returns to its initial state (Step of putting the brake during driving while the operation handle is returned to its initial state (S130)).
[0041] In the state that the operation handle 31 is in the initial state during driving, as indicated by the arrow number a in
[0042] For your reference, if the driving direction before the operation handle 31 returns to its original state is a backward mode, when the operation handle 31 is pushed forwards once, the backward mode is changed into the forward mode.
[0043] In the state that the driving direction is in the backward mode, as indicated by the arrow number {circle around (2)} in
[0044] In the step of driving backwards, it is preferable to add sound effects in order to provide safety in driving in the rear of bad visibility.
[0045]
[0046] As described above, when electric power is applied, as indicated by the arrow number {circle around (1)} in
[0047] When the rider removes the pulling power from the operation handle 31 while driving forwards, the operation handle 31 is naturally restored to its original position while restoring power is generated from the coil spring 53 mounted on the steering unit 50 inside the steering housing 40. In the above process, the encoder 44 returns to its initial state, and the wheelchair 10 stops (Step of braking while returning the operation handle to its original position (S230)).
[0048] In the state that the operation handle 31 is in the original position, when the rider presses a driving direction change button mounted on the operation handle 31, the driving direction is changed from the forward mode to the backward mode (Step of changing a driving direction by pressing the driving direction change button (S240)). The driving direction change button is mounted to change the driving mode, and the controller changes the driving direction according to a signal of the change button.
[0049] For your reference, if the backward mode is the backward mode before the operation handle 31 is in the original position, when the rider presses the change button, the driving direction is changed from the backward mode to the forward mode.
[0050] In the state that the driving direction has been changed into the backward mode, as indicated by the arrow number {circle around (1)} in
[0051] In the step of driving backwards, it is preferable to add sound effects in order to provide safety in driving in the rear of bad visibility.
[0052]
[0053] As described above, when electric power is supplied, as indicated by the arrow number {circle around (1)} in
[0054] When the rider removes the power to pull the operation handle 31 toward the chest during forward driving, restoring power is generated from the coil spring 53 mounted on the steering unit 50 inside the steering housing 40, and the operation handle 31 is naturally restored in place. The wheelchair 10 stops as the encoder 44 returns to its initial state (Step of putting the brake during driving while the operation handle is returned to its initial state (S330)).
[0055] In the state that the operation handle 31 is in the initial state during driving, as indicated by the arrow number {circle around (2)} in
[0056] In the step of driving backwards, it is preferable to add sound effects in order to provide safety in driving in the rear of bad visibility.
[0057]
[0058] As described above, when electric power is supplied, as indicated by the arrow number {circle around (1)} in
[0059] When the rider removes the power to pull the operation handle 31 toward the chest during forward driving, restoring power is generated from the coil spring 53 mounted on the steering unit 50 inside the steering housing 40, and the operation handle 31 is naturally restored in place. The wheelchair 10 stops as the encoder 44 returns to its initial state (Step of putting the brake during driving while the operation handle is returned to its initial state (S430)).
[0060] In the state that the operation handle 31 is in the original position, when the rider presses a driving direction change button mounted on the operation handle 31, the driving direction is changed from the forward mode to the backward mode (Step of changing a driving direction by pressing the driving direction change button (S440)). The driving direction change button is mounted to change the driving mode, and the controller changes the driving direction according to a signal of the change button.
[0061] For your reference, if the backward mode is the backward mode before the operation handle 31 is in the original position, when the rider presses the change button, the driving direction is changed from the backward mode to the forward mode.
[0062] In the state that the driving direction has been changed into the backward mode, as indicated by the arrow number {circle around (2)} a in
[0063] In the step of driving backwards, it is preferable to add sound effects in order to provide safety in driving in the rear of bad visibility.
[0064] As described above, the driving method of the wheelchair power apparatus for electronic driving conversion has been created for severely disabled people, for instance, patients with spinal cord injury, and people who have a difficulty in delicate driving using the fingers. The present invention can control the driving direction and the driving speed just when the rider pushes or pulls the operation handle 31 forwards or backwards in a state that the rider simply puts the palm or the wrist on the operation handle 31.
[0065] Moreover, the present invention can provide the disabled, the weak or the old with convenience by simply converting the existing manual four-wheel wheelchair into the electronic three-wheel wheelchair.
[0066] In the meantime, the present invention can reduce burden of expenses because there is no need to buy a high-priced electronic wheelchair, and can provide convenience in movement at a place to visit or at a vacation spot since a general electronic wheelchair cannot be loaded in a trunk of a vehicle but the wheelchair according to the present invention can be loaded in a trunk of a vehicle after the electronic module 30 is separated from the manual wheelchair and the wheelchair is folded.