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首页> 外文期刊>Journal of terramechanics >Development of in-wheel sensor system for accurate measurement of wheel terrain interaction characteristics
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Development of in-wheel sensor system for accurate measurement of wheel terrain interaction characteristics

机译:车轮内传感器系统的开发,用于精确测量车轮地形相互作用特性

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Planetary rovers need high mobility on a rough terrain such as sandy soil, because such a terrain often impedes the rover mobility and causes significant wheel slip. Therefore, the accurate estimation of wheel soil interaction characteristics is an important issue. Recent studies related to wheel soil interaction mechanics have revealed that the classical wheel model has not adequately addressed the actual interaction characteristics observed through experiments. This article proposes an in-wheel sensor system equipped with two sensory devices on the wheel surface: force sensors that directly measure the force distribution between the wheel and soil and light sensors that accurately detect the wheel soil surface boundary line. This sensor design enables the accurate measurement of wheel terrain interaction characteristics such as wheel force distribution, wheel soil contact angles, and wheel sinkage when the powered wheel runs on loose sand. In this article, the development of the in-wheel sensor system is introduced along with its system diagram and sensor modules. The usefulness of the in-wheel sensor system is then experimentally evaluated via a single wheel test bench. The experimental results confirm that explicit differences can be observed between the classical wheel model and practical data measured by the in-wheel sensor system. (C) 2015 ISTVS. Published by Elsevier Ltd. All rights reserved.
机译:行星漫游者需要在崎terrain的地形(如沙土)上具有较高的机动性,因为这种地形通常会阻碍漫游者的机动性并导致明显的车轮打滑。因此,准确估算轮土相互作用特性是一个重要的问题。最近有关车轮土壤相互作用机理的研究表明,经典车轮模型不能充分解决通过实验观察到的实际相互作用特性。本文提出了一种车轮内传感器系统,该系统在车轮表面上配备了两个传感设备:直接测量车轮与土壤之间的力分布的力传感器和准确检测车轮土壤表面边界线的光传感器。当动力车轮在松软的沙子上行驶时,这种传感器设计能够准确测量车轮地形相互作用特性,例如车轮力分布,车轮土壤接触角和车轮沉降。在本文中,将介绍轮内传感器系统的开发以及其系统图和传感器模块。然后通过单轮测试台通过实验评估轮内传感器系统的有用性。实验结果证实,在经典车轮模型和轮内传感器系统测量的实际数据之间可以观察到明显的差异。 (C)2015年ISTVS。由Elsevier Ltd.出版。保留所有权利。

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