首页> 外文会议>Americas Regional Conference of the International Society for Terrain Vehicle Systems >STOCHASTIC MODELING AND UNCERTAINTY CASCADE OF SOIL BEARING AND SHEARING CHARACTERISTICS FOR LIGHT-WEIGHT VEHICLE APPLICATIONS
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STOCHASTIC MODELING AND UNCERTAINTY CASCADE OF SOIL BEARING AND SHEARING CHARACTERISTICS FOR LIGHT-WEIGHT VEHICLE APPLICATIONS

机译:土壤轴承随机建模与不确定性级联,轻型车辆应用剪切特性

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This paper investigates the validity of commonly used terramechanics models for light-weight vehicle applications while accounting for experimental variability. This is accomplished by means of cascading uncertainty up to the terminal point of operations measurement. Vehicle-terrain interaction is extremely complex, and thus models and simulation methods for vehicle mobility prediction are largely based on empirical test data. Analytical methods are compared to experimental measurements of key operational parameters such as drawbar force, torque, and sinkage. Models of these operational parameters ultimately depend on a small set of empirically determined soil parameters, each with an inherent uncertainty due to test variability. The soil parameters associated with normal loads are determined by fitting the dimensionless form of Bekker's equation to the data given by the pressure-sinkage test. In a similar approach, the soil parameters associated with shear loads are determined by fitting Janosi and Hanamoto's equation to the data given by the direct shear test. An uncertainty model is used to propagate the soil parameter variability through to the wheel performance based on Wong and Reece. The commonly used analytical model is shown to be inaccurate as the envelope of model uncertainty does not lie within the experimental measures, suggesting that model improvements are required to accurately predict the performance of light-weight vehicles on deformable terrain. Disclaimer: Reference herein to any specific commercial company, product, process, or service by trade name, trademark, manufacturer, or otherwise, does not necessarily constitute or imply its endorsement, recommendation, or favoring by the United States Government or the Department of the Army (DoA). The opinions of the authors expressed herein do not necessarily state or reflect those of the United States Government or the DoA, and shall not be used for advertising or product endorsement purposes.
机译:本文研究了轻量级车辆应用常用机械模型的有效性,同时考虑了实验性变异性。这是通过级联不确定性的级联操作测量点的不确定性来实现。车辆地形相互作用非常复杂,因此车辆迁移率预测的模型和仿真方法主要基于经验测试数据。将分析方法与关键操作参数的实验测量进行比较,如牵引杆力,扭矩和沉陷。这些操作参数的模型最终依赖于一小部分经验确定的土壤参数,每个参数具有由于测试变异性导致的固有的不确定性。与正常负载相关的土壤参数是通过将肉饼形式的肉饼形式与压力降低测试给出的数据拟合来确定。在类似的方法中,通过将Janosi和Hanamoto的方程拟合到直接剪切测试给出的数据来确定与剪切载荷相关的土壤参数。不确定性模型用于将土壤参数可变性传播到基于Wong和Reece的车轮性能。常用的分析模型被证明是不准确的,因为模型不确定度不在实验措施内,表明需要准确地预测可变形地形上轻型车辆的性能。免责声明:通过商品名,商标,制造商或其他特定商业公司,产品,过程或服务,不一定构成或暗示美国政府或美国政府的认可,推荐或青睐军队(DOA)。本文表达的作者的意见不一定是国家或反映美国政府或DOA的意见,不得用于广告或产品认可的目的。

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