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首页> 外文期刊>Transactions of the Institute of Measurement and Control >Tire blow-out control for direct drive electric vehicles using reconfiguration of torque distribution and vertical load
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Tire blow-out control for direct drive electric vehicles using reconfiguration of torque distribution and vertical load

机译:使用扭矩分布和垂直载荷的直接驱动电动车辆的轮胎漏洞控制

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This paper proposes a composite stability control strategy for tire blowout electric vehicle with explicit consideration of vertical load redistribution, subject to multi-constraints, uncertainty and redundant actuation. To readily implement system state and actuator increment constraints, a model predictive controller is designed to enhance vehicle stability performance and original lane keeping. Meanwhile, a sliding mode control-based longitudinal velocity controller is collaboratively proposed for maintaining the original longitudinal velocity after tire blowout in the freeway, which can reduce considerably the rear-end collision accidents. After that, a constrained weighting least square-based reconfigurable torque distributor is developed to realize the tracking of the virtual resultant yaw-moment and longitudinal tire force signals generated by the above controllers, considering system physical constraints and actuator capability simultaneously. Simulations with different tire blowout scenarios are conducted on the developed dynamic simulation platform to demonstrate the effectiveness of the designed control methods; furthermore, the influence of different tire blowout on the vehicle movement behaviors is discussed. Statistical results based on the system transient performance and control effort evaluating indictors highlight the considerable superiority of the developed model predictive controller compared with the linear quadratic regulator.
机译:本文提出了一种复合稳定性控制策略,用于防止垂直载荷再分布的轮胎井喷电动车辆,受到多约束,不确定性和冗余致动。为了容易地实现系统状态和致动器增量约束,型号预测控制器旨在增强车辆稳定性性能和原始车道保持。同时,对基于滑模控制的纵向速度控制器被协同地提出用于在高速公路中的轮胎井喷后保持原始的纵向速度,这可以减少后端碰撞事故。之后,开发了一种受约束的加权基于方形的可重新配置扭矩分配器,以实现由上述控制器产生的虚拟结果偏航力和纵向轮胎力信号的跟踪,考虑同时进行系统物理限制和致动器能力。在开发的动态模拟平台上进行了不同轮胎井喷场景的模拟,以证明设计的控制方法的有效性;此外,讨论了不同轮胎井喷对车辆运动行为的影响。基于系统瞬态性能和控制工作评估标记的统计结果突出了与线性二次调节器相比开发模型预测控制器的相当大的优势。

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