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Novel electric power steering control strategies of commercial vehicles considering adhesion coefficient

机译:考虑粘附系数的商用车新型电力转向控制策略

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The steering resistance torque of commercial vehicles on low adhesion pavement is greatly reduced. Therefore, while driving on low adhesion pavement, the use of traditional EPS control strategies without considering adhesion coefficient will lead to driver’s road feeling being reduced or even lost, endangering driving safety. In this paper, the relationship between adhesion coefficient and steering resistance torque is researched through theoretical analysis and simulation. Two novel EPS control strategies of commercial vehicles considering adhesion coefficient are designed. The first control strategy calculates assist coefficient through steering resistance torque under different working conditions, and assist coefficient is used to adjust the assist torque on the pavements with different adhesion coefficients. The second control strategy applies a compensation current related to adhesion coefficient on the basis of traditional EPS control strategy to improve the road feeling of low adhesion roads. Finally, a joint simulation model of TruckSim/Simulink is established, the two novel control strategies are simulated and verified. The simulation results show that both the two novel control strategies can improve the road feeling of the driver and improve the driving safety on low-adhesion road while ensuring the steering portability.
机译:低粘附路面上的商用车辆的转向阻力扭矩大大降低。因此,在低粘附路面驱动时,在不考虑粘附系数的情况下使用传统的EPS控制策略将导致驾驶员的道路感觉减少甚至丢失,危及驾驶安全性。本文通过理论分析和仿真研究了粘合系数和转向扭矩之间的关系。考虑粘附系数的两种新型EPS控制策略的商用车辆。第一控制策略通过在不同的工作条件下通过转向电阻扭矩来计算辅助系数,并且辅助系数用于用不同的粘合系数调节路面上的辅助扭矩。第二控制策略在传统的EPS控制策略的基础上应用与粘附系数相关的补偿电流,以提高低粘附道路的道路感觉。最后,建立了TruckSIM / Simulink的联合仿真模型,模拟并验证了两种新的控制策略。仿真结果表明,两种新的控制策略都可以提高驾驶员的道路感觉,提高低粘连道路的驱动安全性,同时确保转向便携性。

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