IP Library › Patent Application 18192339
Patent Application
App. No. 18/192,339

TRAVEL CONTROL DEVICE FOR MOBILITY DEVICE AND METHOD FOR MOBILITY DEVICE

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Quick Facts
Patent No.
US None
App. No.
18/192,339
Abstract

A travel control device and method control for a mobility device is disclosed. The travel control device includes a distance sensor on one side frame of the mobility device and adjusts a travel speed of the mobility device based on a distance to stairs measured by the distance sensor when the mobility device travels on the stairs to reduce collision force between the mobility device and the stairs, thereby improving the traveling stability and immediacy of the mobility device.

Claims (46)

1 . A travel control device configured to control a mobility device, the travel control device comprising:

a distance sensor configured to be disposed at a frame of the mobility device, the distance sensor being configured to, based on the mobility device traveling on stairs, measure a distance from the mobility device to the stairs; and

a controller configured to, while the mobility device travels on the stairs, adjust a travel speed of the mobility device based on the measured distance to the stairs.

2 . The travel control device of claim 1 , wherein the distance sensor comprises:

a first laser sensor configured to, based on the mobility device traveling on uphill stairs in a first direction, measure a first distance from the mobility device to the uphill stairs; and

a second laser sensor configured to, based on the mobility device traveling on downhill stairs in a second direction opposite to the first direction, measure a second distance from the mobility device to the downhill stairs.

3 . The travel control device of claim 2 , wherein the controller is configured to activate the first laser sensor based on the mobility device traveling on the uphill stairs in the first direction.

4 . The travel control device of claim 2 , wherein the controller is configured to activate the second laser sensor based on the mobility device traveling on the downhill stairs in the second direction.

5 . The travel control device of claim 2 , wherein the controller is configured to reduce the travel speed of the mobility device based on the first distance to the stairs being less than a first threshold distance while the mobility device travels on the uphill stairs in the first direction.

6 . The travel control device of claim 2 , wherein the controller is configured to reduce the travel speed of the mobility device based on the second distance to the stairs being greater than a threshold distance while the mobility device travels on the downhill stairs in the second direction.

7 . The travel control device of claim 1 , further comprising:

a tilt sensor configured to measure a tilt of the mobility device with respect to a reference position of the mobility device,

wherein the controller is configured to adjust the travel speed of the mobility device based on the tilt measured by the tilt sensor being greater than a threshold angle.

8 . The travel control device of claim 1 , wherein the distance sensor comprises:

a laser sensor configured to emit light; and

a motor configured to adjust an irradiation angle of the laser sensor.

9 . The travel control device of claim 8 , wherein the controller is configured to:

control the motor to adjust the irradiation angle of the laser sensor to a first irradiation angle based on the mobility device traveling on uphill stairs in a first direction; and

control the motor such to adjust the irradiation angle of the laser sensor to a second irradiation angle based on the mobility device traveling on downhill stairs in a second direction opposite to the first direction.

10 . The travel control device of claim 8 , wherein the controller is configured to reduce the travel speed of the mobility device based on the measured distance to the stairs being less than a first threshold distance while the mobility device travels on uphill stairs.

11 . The travel control device of claim 8 , wherein the controller is configured to reduce the travel speed of the mobility device based on the measured distance to the stairs being greater than a threshold distance while the mobility device travels on downhill stairs.

12 . A travel control method for controlling a mobility device, the travel control method comprising:

activating, by a controller, a distance sensor disposed at a frame of the mobility device based on the mobility device traveling on stairs, the distance sensor being configured to measure a distance from the mobility device to the stairs based on the mobility device traveling on the stairs; and

while the mobility device travels on the stairs, adjusting, by the controller, a travel speed of the mobility device based on the measured distance to the stairs.

13 . The travel control method of claim 12 , wherein the distance sensor comprises:

a first laser sensor configured to measure a first distance to uphill stairs based on the mobility device traveling on the uphill stairs in a first direction; and

a second laser sensor configured to measure a second distance to downhill stairs based on the mobility device traveling on the downhill stairs in a second direction opposite to the first direction.

14 . The travel control method of claim 13 , wherein the activating the distance sensor comprises:

activating, by the controller, the first laser sensor based on the mobility device traveling on the uphill stairs in the first direction; and

activating, by the controller, the second laser sensor based on the mobility device traveling on the downhill stairs in the second direction.

15 . The travel control method of claim 13 , wherein the adjusting the travel speed of the mobility device comprises:

reducing the travel speed of the mobility device based on the first distance to the stairs being less than a first threshold distance while the mobility device travels on the uphill stairs in the first direction; and

reducing the travel speed of the mobility device based on the second distance to the stairs being greater than a second threshold distance while the mobility device travels on the downhill stairs in the second direction.

16 . The travel control method of claim 12 , wherein the adjusting the travel speed of the mobility device comprises:

measuring, by a tilt sensor, a tilt of the mobility device with respect to a reference position of the mobility device; and

adjusting, by the controller, the travel speed of the mobility device based on the tilt measured by the tilt sensor being greater than a threshold angle.

17 . The travel control method of claim 12 , wherein the distance sensor comprises:

a laser sensor configured to emit light; and

a motor configured to adjust an irradiation angle of the laser sensor.

18 . The travel control method of claim 17 , wherein the activating the distance sensor comprises:

controlling the motor to adjust the irradiation angle of the laser sensor to a first irradiation angle based on the mobility device traveling on uphill stairs in a first direction; and

controlling the motor to adjust the irradiation angle of the laser sensor to a second irradiation angle based on the mobility device traveling on downhill stairs in a second direction opposite to the first direction.

19 . The travel control method of claim 17 , wherein the adjusting the travel speed of the mobility device comprises:

reducing the travel speed of the mobility device based on the measured distance to the stairs being less than a first threshold distance while the mobility device travels on uphill stairs.

20 . The travel control method of claim 17 , wherein the adjusting the travel speed of the mobility device comprises:

reducing the travel speed of the mobility device based on the measured distance to the stairs being greater than a threshold distance while the mobility device travels on downhill stairs.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2023
From: HYUNDAI MOTOR COMPANY; KIA CORPORATION
To: MOBINN INC.
Reel/Frame 065359/0556 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2023
From: JO, SUN MYOUNG; CHOI, JIN; CHUNG, HOON
To: HYUNDAI MOTOR COMPANY; KIA CORPORATION
Reel/Frame 063159/0499 →