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Parallelized Multiscale Off-Road Vehicle Mobility Simulation Algorithm and Full-Scale Vehicle Validation

机译:并行化多尺度越床车间移动仿真算法和全尺寸车辆验证

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摘要

In this work, a scalable parallel computing scheme for the hierarchical multiscale off-road vehicle mobility simulation capability is developed with the hybrid message passing interface (MPI)/OpenMP framework, and it is validated against full-scale vehicle test data. While the hierarchical multiscale modeling approach has been introduced to high-fidelity off-road mobility simulations to eliminate limitations of existing single-scale deformable terrain models, computational complexities associated with the large dimensionality of multibody vehicle equations, involving nonlinear finite element tires and multiscale terrain models, need to be addressed for use in full-scale vehicle mobility predictions. To this end, a co-simulation framework for the multiscale off-road vehicle mobility model is proposed by exploiting the moving soil patch technique. This allows for systematically extracting four moving soil patches for four tires in a vehicle model from the deformable terrain domain, and time integrations of the four tire-soil subsystems are performed concurrently to enable computational speedup. Furthermore, an automated updating scheme for multiscale moving soil patches for a full vehicle model is developed, considering the multipass effect in various vehicle maneuvering scenarios. To demonstrate the off-road mobility prediction capability using the proposed parallelized multiscale vehicle-terrain interaction simulation algorithm, full-scale vehicle validation is presented for the vehicle drawbar pull as well as variable grade hill climb tests on soft soil.
机译:在这项工作中,使用混合消息传递接口(MPI)/ OpenMP框架开发了用于分层多尺度越床车辆移动性仿真能力的可扩展并行计算方案,并且验证了全尺寸车辆测试数据。虽然已经引入了分层多尺度建模方法,以消除现有的单尺度可变形地形模型的局限性,与多体形车型的大维度相关的计算复杂性,涉及非线性有限元轮胎和多尺度地形模型需要解决以用于全规模的车辆移动性预测。为此,通过利用移动土壤贴片技术提出了一种用于多尺度越岩车车辆移动性模型的共模仿真框架。这允许系统地从可变形地形域中系统地提取四个轮胎的四个轮胎的移动土壤贴片,并且同时执行四个轮胎 - 土壤系统的时间整合以实现计算加速。此外,考虑到各种车辆机动方案中的多肢度效应,开发了用于全车型的多尺度移动土壤贴片的自动更新方案。为了展示使用所提出的并行化多尺度车辆地形交互仿真算法的越野迁移率预测能力,为车辆牵引杆拉出的全尺度车辆验证以及在软土壤上的可变级山坡测试。

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