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A ZMP based interval criterion for rollover-risk diagnosis

机译:基于ZMP的过渡风险诊断的间隔标准

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摘要

This paper presents an interval criterion used to anticipate rollover accidents of all-terrain wheeled vehicles. The Zero Moment Point concept, initially designed for humanoid robots, is presented in the case of a 4 wheels vehicle, first in an ideal case of a perfectly flat ground and finally in the off-road context. This adaptation is done by assuming that the tyre/ground contact is no more punctual but distributed in a set enclosed in a computable box (3D interval). It is then possible to derive an interval version of the ideal ZMP-based criterion. The method is experimented by using data collected during a real experiment done with a vineyard harvester that is a typical case of wheeled reconfigurable vehicle. The interval criterion gives a flexibility for its interpretation that is more adapted to the complex and varying all-terrain context.
机译:本文介绍了用于预测全地形轮式车辆的翻车事故的间隔标准。在4轮车辆的情况下,首先在一个完美平坦的地面的理想情况下,首先在一个理想的情况下呈现为人形机器人的零时刻点概念。通过假设轮胎/接地触点不再适当的准时但分布在可计算盒(3D间隔3D间隔)中的集合中不再适应这种调整。然后可以导出基于ZMP的理想标准的间隔版本。通过使用葡萄园收割机在真实实验期间采用的数据进行实验,该方法是通过葡萄园收割机进行的,这是轮式可重新配置车辆的典型案例。间隔标准为其解释提供了灵活性,其更适合于复杂和不同的全地形上下文。

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