EP1529556A2

Travelling apparatus and method for controlling thereof

Abstract

A traveling apparatus and a method for controlling thereof, in which an abrupt turn to make a rider fall down is prevented and stable traveling is obtained without fail, are provided. At a step [1] whether or not a turn operation is performed by means of a barycentric position of the rider, and the barycentric position is detected at a step [2] from a load sensor. Further, a turn velocity command is generated at a step [3]. Then, the barycentric position to which the centrifugal force is added is detected at a step [4], and it is judged at a step [5] whether or not the barycentric position is close to a tire. When it is close to the tire (Yes), processing to reduce the turn velocity is performed at a step [6]. Hereupon, such computation is performed that a sensor signal ωyaw from a gyroscopic sensor is set to ωyaw ← ωyaw×Gω (Gω is a value that changes in inverse proportion to the strength of the centrifugal force). When the barycentric position is not close to the tire (No), it is set to ωyaw←ωyaw at a step [7]. Furthermore, a wheel rotational velocity command is supplied at a step [8] to set tire velocity of right and left wheels to ωyaw, and a turn of a vehicle is performed at a step [9].

EP1529556A2, drawing sheet 1
Sheet 1 of 168

Term

Term ended

Projected expiry passed 3 November 2024, 1.9 years ago.

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24 claims: 4 independent, 20 dependent

  1. 1
    A traveling apparatus comprising:means for driving a plurality of wheels independently and a chassis to connect said plurality of wheels, in which means for detecting a shift of barycenter of a rider is provided to perform traveling by setting rotational velocity of said plurality of wheels respectively in accordance with information on said detected shift of the barycenter, wherein turning is performed in accordance with the shift of said barycentric position to the right and left;and control means for restricting the rotational velocity of each of said plurality of wheels to a predetermined limited value by detecting that said barycentric position has come close to a position of said wheel.
  2. 8
    A method for controlling a traveling apparatus including a plurality of wheels independently driven and a chassis to connect said plurality of wheels, in which means for detecting a shift of barycenter of a rider is provided to perform traveling by setting rotational velocity of said plurality of wheels respectively in accordance with information on said detected shift of barycenter, wherein    turning is performed in accordance with the shift of said barycentric position to the right and left, and    a predetermined restriction is performed with respect to the rotational velocity of each of said plurality of wheels by detecting that said barycentric position has come close to a position of said wheel.
  3. 15
    A traveling apparatus comprising:means for driving a plurality of wheels independently and a chassis to connect said plurality of wheels, in which means for detecting a shift of barycenter of a rider is provided to perform traveling by setting rotational velocity of said plurality of wheels respectively in accordance with information on said detected shift of the barycenter, wherein detection means for detecting acceleration in the gravitational direction is provided in said chassis;and control means for applying a predetermined control to the rotational velocity of each of said plurality of wheels by detecting a change of the acceleration in said gravitational direction.
  4. 20
    A method for controlling a traveling apparatus including a plurality of wheels independently driven and a chassis to connect said plurality of wheels, in which means for detecting a shift of barycenter of a rider is provided to perform traveling by setting rotational velocity of said plurality of wheels respectively in accordance with information on said detected shift of the barycenter, wherein    acceleration in the gravitational direction of said chassis is detected, and    predetermined control is applied to the rotational velocity of each of said plurality of wheels by detecting a change of the acceleration in the gravitational direction.