首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >A quasi steady state approach to race car lap simulation in order to understand the effects of racing line and centre of gravity location
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A quasi steady state approach to race car lap simulation in order to understand the effects of racing line and centre of gravity location

机译:一种准稳态方法,用于赛车圈模拟,以了解赛车线和重心位置的影响

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摘要

Using an established seven-degree-of-freedom (7DOF) model of an open wheel race car, a new quasi steady state lap simulation method is described. The method is based on optimal control techniques. It produces a GG speed diagram as an interim result, and is shown to have a low computational expenditure when compared with the current transient optimal control method. This paper shows a validation step, reports a case study using the new method, and compares the result with a transient optimal control method. The sensitivity of the optimal line for simulation studies is discussed in terms of a centre of gravity location change. Both simulation methods show improvements in lap time owing to a 6 per cent centre of gravity set-up change. The difference in optimal lines caused by a 6 per cent CG change rearward is shown to be so small that a driver is unlikely to find the information useful. In light of this observation, the computational effort required to generate a new optimal line for each set-up change may be misspent.
机译:利用已建立的开放式车轮赛车的七自由度(7DOF)模型,描述了一种新的准稳态膝部仿真方法。该方法基于最佳控制技术。它产生一个GG速度图作为中间结果,并且与当前的瞬态最优控制方法相比,具有较低的计算量。本文显示了验证步骤,报告了使用新方法的案例研究,并将结果与​​瞬态最优控制方法进行了比较。根据重心位置变化,讨论了用于仿真研究的最佳直线的灵敏度。两种模拟方法都表明,由于重心设置变化了6%,单圈时间得到了改善。向后变化6%的CG所引起的最佳行的差异显示很小,以致驾驶员不太可能找到有用的信息。根据这种观察,可能会浪费为每个设置更改生成一条新的最佳线所需的计算工作量。

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