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Development of a surrogate-based vehicle dynamic model to reduce computational delays in a driving simulator

机译:开发基于代理的车辆动力学模型以减少驾驶模拟器中的计算延迟

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摘要

The development of a real-time driving simulator involves highly complex integrated and interdependent subsystems that require a large amount of computational time. When advanced hardware is unavailable for economic reasons, achieving real-time simulation is challenging, and thus delays are inevitable. Moreover, computational delays in the response of driving simulator subsystems reduce the fidelity of the simulation. In this paper, we propose a technique to decrease computational delays in a driving simulator. We used approximation techniques, sensitivity analysis, decomposition, and sampling techniques to develop a surrogate-based vehicle dynamic model (SBVDM). This global surrogate model can be used in place of the conventional vehicle dynamic model to reduce the computational burden while maintaining an acceptable accuracy. Our results showed that the surrogate model can significantly reduce computing costs compared to the computationally expensive conventional model. In addition, the response time of the SBVDM is nearly five times faster than the original simulation codes. Also, as a method to reduce hardware cost, the SBVDM was used and the results showed that most of the responses were accurate and acceptable in relation to longitudinal and lateral dynamics. Based on the results, the authors suggested that the proposed framework could be useful for developing low-cost vehicle simulation systems that require fast computational output.
机译:实时驾驶模拟器的开发涉及高度复杂的集成且相互依赖的子系统,这些子系统需要大量的计算时间。当出于经济原因无法使用高级硬件时,实现实时仿真具有挑战性,因此不可避免会有延迟。而且,驾驶模拟器子系统的响应中的计算延迟降低了模拟的保真度。在本文中,我们提出了一种减少驾驶模拟器中的计算延迟的技术。我们使用了近似技术,灵敏度分析,分解和采样技术来开发基于代理的车辆动态模型(SBVDM)。可以使用此全局替代模型代替常规的车辆动力学模型,以减少计算负担,同时保持可接受的精度。我们的结果表明,与计算上昂贵的常规模型相比,代理模型可以显着降低计算成本。此外,SBVDM的响应时间比原始仿真代码快将近五倍。另外,作为一种降低硬件成本的方法,使用了SBVDM,结果表明,相对于纵向和横向动力学,大多数响应都是准确的并且可以接受的。基于这些结果,作者建议所提出的框架对于开发需要快速计算输出的低成本车辆仿真系统可能是有用的。

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