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Evaluation of Combined Energy-Efficient and Stability Strategies Utilising Direct Yaw Moment Control

机译:利用直接横摆力控制的综合节能稳定策略评价

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For sustainability reasons it is important to reduce energy consumption during driving. One contribution to energy savings is by using proper wheel torque distributions during manoeuvring. An active energy-efficient direct yaw moment control (DYC) for electric vehicles has previously been proposed by the authors, taking the motor efficiency map into consideration. The results show a potential for reduced energy losses during driving, but it might result in stability problems during safety-critical maneuvres. In this work, consequences on stability due to this proposed energy efficient DYC is explored. Also an approach combining DYC both energy-efficiency and stability is proposed. The simulation results show that for the studied case the combination of DYC for energy-efficiency and stability can have an potential to both keep the vehicle safe and save considerable percentage of energy during both non safety-critical and safety-critical driving manoeuvres.
机译:对于可持续性原因,重要的是减少驾驶期间的能耗。 能节省的一个贡献是在操纵期间使用适当的车轮扭矩分布。 作者提出了一种用于电动车辆的活跃节能直接横摆力量控制(DYC),以考虑电机效率图。 结果表明,在驾驶期间减少能量损失的可能性,但可能导致安全关键型仓库期间的稳定性问题。 在这项工作中,探讨了这一拟议节能DYC导致稳定的后果。 还提出了一种方法,组合DYC的能量效率和稳定性。 仿真结果表明,对于所研究的情况,DYC的组合能节能和稳定性可以使车辆能够保持安全,并在非安全关键和安全关键的驾驶演习中节省相当大的能量。

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