IP Library Granted Patent US 8,983,747
Granted Patent B2
US 8,983,747 · App. 13/559,779 · Granted Mar 17, 2015

Power wheelchair and brake control method of the power wheelchair

Inventors: Hou-Hsien Lee (New Taipei, TW); Chang-Jung Lee (New Taipei, TW); Chih-Ping Lo (New Taipei, TW)
Assignee: Zhongshan Innocloud Intellectual Property Services Co., Ltd.
B60T8/1755B60T7/22
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Quick Facts
Patent No.
US 8,983,747
App. No.
13/559,779
Granted
Mar 17, 2015
Kind
B2
Abstract

In a brake control method of a power wheelchair, the power wheelchair includes an electronic gradienter, a brake sensor, a brake apparatus, and a brake controller. The electronic gradienter detects stability data of the power wheelchair to obtain a gradient angle and a gradient direction of the power wheelchair. When the gradient angle does not exceed a safety angle range, the brake controller controls the brake apparatus to brake the power wheelchair, and the brake sensor detects braking data of the power wheelchair. The method calculates a braking strength value for braking each wheel of the power wheelchair according to the gradient angle and the gradient direction of the power wheelchair when the brake operation on the power wheelchair is improper. The brake controller adjusts the brake apparatus to brake the power wheelchair according to the braking strength value of each of the wheels.

Claims (42)

1. A power wheelchair, comprising:

an electronic gradienter, a brake sensor, a brake apparatus, and a brake controller;

a storage device, and at least one microprocessor; and

a brake control system stored in the storage device and executed by the at least one microprocessor, the brake control system comprising:

a gradient detection module that detects stability data of the power wheelchair using the electronic gradienter, obtains a gradient angle and a gradient direction of the power wheelchair from the stability data of the power wheelchair, determines whether the power wheelchair is on an inclined surface according to the gradient angle of the power wheelchair, and determines whether the gradient angle exceeds a safety angle range preset by a user if the power wheelchair is on the inclined surface;

a brake detection module that controls the brake apparatus to brake the power wheelchair using the brake controller if the gradient angle does not exceed the safety angle range, detects braking data of the power wheelchair using the brake sensor, and determines whether the brake operation on the power wheelchair is proper according to the braking data of the power wheelchair; and

a brake adjusting module that calculates a braking strength value for braking each wheel of the power wheelchair according to the gradient angle and the gradient direction of the power wheelchair when the brake operation on the power wheelchair is improper, and adjusts the brake apparatus to brake the power wheelchair using the brake controller according to the braking strength value of each of the wheels.

2. The power wheelchair according to claim 1 , wherein the brake control system further comprises a brake warning module that generates a warning message indicating that the user should be careful on the inclined surface if the gradient angle exceeds the safety angle range, and controls the brake apparatus to brake each wheel of the power wheelchair through the brake controller.

3. The power wheelchair according to claim 1 , wherein the electronic gradienter is an attachment device including a gravity sensor that measures the stability data of the power wheelchair to determine whether the power wheelchair is in a level state or an inclination state.

4. The power wheelchair according to claim 1 , wherein the brake controller controls the brake apparatus to brake each of the wheels of the power wheelchair using an oil pressure unit included in the brake apparatus.

5. The power wheelchair according to claim 1 , wherein the brake sensor is a data sensor that obtains the braking data of the power wheelchair when the power wheelchair is braked by the brake apparatus, and the braking data comprise the braking strength value of each wheel of the power wheelchair and a driving speed of the power wheelchair.

6. The power wheelchair according to claim 1 , wherein the brake detection module determines whether the brake operation on the power wheelchair is proper by checking if the braking strength value of rear wheels of the power wheelchair is greater than the braking strength value of front wheels of the power wheelchair.

7. A brake control method of a power wheelchair, the power wheelchair comprising an electronic gradienter, a brake sensor, a brake apparatus, and a brake controller, the brake control method comprising:

detecting stability data of the power wheelchair using the electronic gradienter, and obtaining a gradient angle and a gradient direction of the power wheelchair from the stability data of the power wheelchair;

determining whether the power wheelchair is on an inclined surface according to the gradient angle of the power wheelchair;

determining whether the gradient angle exceeds a safety angle range preset by a user when the power wheelchair is on the inclined surface;

controlling the brake apparatus to brake the power wheelchair using the brake controller and detecting braking data of the power wheelchair using the brake sensor, if the gradient angle does not exceed the safety angle range;

determining whether the brake operation on the power wheelchair is proper according to the braking data of the power wheelchair;

calculating a braking strength value for braking each wheel of the power wheelchair according to the gradient angle and the gradient direction of the power wheelchair if the brake operation on the power wheelchair is improper; and

automatically adjusting the brake apparatus to brake the power wheelchair using the brake controller according to the braking strength value of each of the wheels.

8. The method according to claim 7 , further comprising:

generating a warning message indicating that the user should be careful on the inclined surface if the gradient angle exceeds the safety angle range; and

controlling the brake apparatus to brake each wheel of the power wheelchair through the brake controller.

9. The method according to claim 7 , wherein the electronic gradienter is an attachment device including a gravity sensor that measures the stability data of the power wheelchair to determine whether the power wheelchair is in a level state or an inclination state.

10. The method according to claim 7 , wherein the brake controller controls the brake apparatus to brake each of the wheels of the power wheelchair using an oil pressure unit included in the brake apparatus.

11. The method according to claim 7 , wherein the brake sensor is a data sensor that obtains the braking data of the power wheelchair when the power wheelchair is braked by the brake apparatus, and the braking data comprise the braking strength value of each wheel of the power wheelchair and a driving speed of the power wheelchair.

12. The method according to claim 7 , wherein whether the brake operation on the power wheelchair is determined by checking if the braking strength value of rear wheels of the power wheelchair is greater than the braking strength value of front wheels of the power wheelchair.

13. A non-transitory storage medium having stored thereon instructions that, when executed by at least one microprocessor of a power wheelchair, causes the microprocessor to perform a brake control method of the power wheelchair, the power wheelchair comprising an electronic gradienter, a brake sensor, a brake apparatus, and a brake controller, the brake control method comprising:

detecting stability data of the power wheelchair using the electronic gradienter, and obtaining a gradient angle and a gradient direction of the power wheelchair from the stability data of the power wheelchair;

determining whether the power wheelchair is on an inclined surface according to the gradient angle of the power wheelchair;

determining whether the gradient angle exceeds a safety angle range preset by a user when the power wheelchair is on the inclined surface;

controlling the brake apparatus to brake the power wheelchair using the brake controller and detecting braking data of the power wheelchair using the brake sensor, if the gradient angle does not exceed the safety angle range;

determining whether the brake operation on the power wheelchair is proper according to the braking data of the power wheelchair;

calculating a braking strength value for braking each wheel of the power wheelchair according to the gradient angle and the gradient direction of the power wheelchair if the brake operation on the power wheelchair is improper; and

automatically adjusting the brake apparatus to brake the power wheelchair using the brake controller according to the braking strength value of each of the wheels.

14. The storage medium according to claim 13 , wherein the method further comprises:

generating a warning message indicating that the user should be careful of the inclined surface if the gradient angle exceeds the safety angle range; and

controlling the brake apparatus to brake each wheel of the power wheelchair through the brake controller.

15. The storage medium according to claim 13 , wherein the electronic gradienter is an attachment device including a gravity sensor that measures the stability data of the power wheelchair to determine whether the power wheelchair is in a level state or an inclination state.

16. The storage medium according to claim 13 , wherein the brake controller controls the brake apparatus to brake each of the wheels of the power wheelchair using an oil pressure unit included in the brake apparatus.

17. The storage medium according to claim 13 , wherein the brake sensor is a data sensor that obtains the braking data of the power wheelchair when the power wheelchair is braked by the brake apparatus, and the braking data comprise the braking strength value of each wheel of the power wheelchair and a driving speed of the power wheelchair.

18. The storage medium according to claim 13 , wherein the brake operation on the power wheelchair is determined by checking if the braking strength value of rear wheels of the power wheelchair is greater than the braking strength value of front wheels of the power wheelchair.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2019
From: ZHONGSHAN INNOCLOUD INTELLECTUAL PROPERTY SERVICES CO.,LTD.
To: SCIENBIZIP CONSULTING(SHENZHEN)CO.,LTD.
Reel/Frame 050709/0949 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2015
From: SCIENBIZIP CONSULTING(SHENZHEN)CO.,LTD.
To: ZHONGSHAN INNOCLOUD INTELLECTUAL PROPERTY SERVICES CO.,LTD.
Reel/Frame 034923/0500 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2014
From: HON HAI PRECISION INDUSTRY CO., LTD.
To: SCIENBIZIP CONSULTING(SHENZHEN)CO.,LTD.
Reel/Frame 034502/0851 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2012
From: LEE, HOU-HSIEN; LEE, CHANG-JUNG; LO, CHIH-PING
To: HON HAI PRECISION INDUSTRY CO., LTD.
Reel/Frame 028655/0210 →
Priority Claims (1)
TW 100143264 A · Nov 25, 2011 · national
Continuity (1)
Related Publication 20130138315A1 · May 30, 2013