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MODEL PREDICTIVE CONTROL BASED ENERGY MANAGEMENT OF POWER-SPLIT HYBRID ELECTRIC VEHICLES IN PRESENCE OF UNCERTAINTY

机译:基于模型预测控制在不确定性存在下电力分配混合动力电动车的能量管理

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A model predictive control (MPC) based robust energy management strategy for power-split hybrid electric vehicles (HEVs) is proposed in this paper which can guarantee charge sustaining constraint satisfaction in presence of uncertainty in future torque demand and vehicle velocity. The proposed method utilizes robust backward reachability analysis to pre-compute a robust set from where control solutions exist that ensure charge sustaining constraint satisfaction despite the uncertainty. This set is then used as the terminal set constraint of the MPC problem followed by tightening of state constraints for robust constraint satisfaction. An equivalent convex optimal control is then formulated which is solved in a receding horizon fashion. Simulation results show the efficacy of the proposed control strategy in robust constraint satisfaction.
机译:本文提出了一种基于模型预测控制(MPC)用于电力分流混合电动车辆(HEV)的鲁棒能量管理策略,可以保证在未来扭矩需求和车辆速度的不确定情况下抵抗受限制满足感。所提出的方法利用稳健的向后可达性分析,以预先计算稳健的集合,从存在控制解决方案,尽管存在不确定性,但是尽管存在不确定性。然后将该组用作MPC问题的终端集约束,然后拧紧状态约束以实现鲁棒的约束满足。然后制定在后退地平线时装求解的等效凸出最佳控制。仿真结果表明,建议控制策略在鲁棒的约束满足中的功效。

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