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On Nonlinear Model Predictive Control for Energy-Efficient Torque-Vectoring

机译:关于节能扭矩矢量的非线性模型预测控制

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A recently growing literature discusses the topics of direct yaw moment control based on model predictive control (MPC), and energy-efficient torque-vectoring (TV) for electric vehicles with multiple powertrains. To reduce energy consumption, the available TV studies focus on the control allocation layer, which calculates the individual wheel torque levels to generate the total reference longitudinal force and direct yaw moment, specified by higher level algorithms to provide the desired longitudinal and lateral vehicle dynamics. In fact, with a system of redundant actuators, the vehicle-level objectives can be achieved by distributing the individual control actions to minimize an optimality criterion, e.g., based on the reduction of different power loss contributions. However, preliminary simulation and experimental studies - not using MPC - show that further important energy savings are possible through the appropriate design of the reference yaw rate. This paper presents a nonlinear model predictive control (NMPC) implementation for energy-efficient TV, which is based on the concurrent optimization of the reference yaw rate and wheel torque allocation. The NMPC cost function weights are varied through a fuzzy logic algorithm to adaptively prioritize vehicle dynamics or energy efficiency, depending on the driving conditions. The results show that the adaptive NMPC configuration allows stable cornering performance with lower energy consumption than a benchmarking fuzzy logic TV controller using an energy-efficient control allocation layer.
机译:最近生长的文献探讨了基于模型预测控制(MPC)的直接横摆力控制的主题,以及用于多个动力传动系统的电动汽车的节能扭矩矢量(电视)。为了减少能耗,可用的电视研究专注于控制分配层,该控制分配层计算单个车轮扭矩水平以产生由更高级别算法指定的总参考纵向力和直接横摆力,以提供所需的纵向和横向车辆动态。事实上,利用冗余致动器的系统,可以通过分配单独的控制动作来实现车辆级目标,以最小化最佳标准,例如,基于不同的功率损耗贡献的降低。然而,初步仿真和实验研究 - 不使用MPC - 表明通过适当的参考横摆率的设计,可以进行进一步的重要节能。本文提出了一种用于节能电视的非线性模型预测控制(NMPC)实施,其基于参考横摆率和车轮扭矩分配的并发优化。根据驾驶条件,NMPC成本函数重量通过模糊逻辑算法改变以自适应地优先考虑车辆动力学或能量效率。结果表明,自适应NMPC配置允许使用节能控制分配层的基准模糊逻辑电视控制器稳定的转弯性能。

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