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Fast Dual-Loop Nonlinear Receding Horizon Control for Energy Management in Hybrid Electric Vehicles

机译:混合动力汽车能量管理的快速双回路非线性后视视野控制

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This paper proposes a receding horizon optimization strategy for the problem of energy management in plug-in hybrid electric vehicles. The approach employs a dual-loop model predictive control strategy. An inner feedback loop addresses the problem of optimally tracking a given reference trajectory for the battery state of energy over a short future horizon using knowledge of the predicted driving cycle. An outer feedback loop generates the battery state of energy reference trajectory by solving approximately the optimal energy management problem for the entire driving cycle. The receding horizon optimization problems associated with both inner and outer loops are solved using a specialized projected Newton method. The controller is compared with existing approaches based on Pontryagin's minimum principle and the effects of imprecise knowledge of the future driving cycle are discussed. This paper contains a detailed simulation study: first, this assesses the optimality of the associated uncertainty-free approach and its computational load. Second, the effects of imprecise knowledge of the future driving cycle are illustrated.
机译:针对插电式混合动力汽车的能源管理问题,本文提出了一种渐进式的优化策略。该方法采用双环模型预测控制策略。内部反馈回路解决了使用预测的驾驶周期知识,在不久的将来对电池的电池状态进行最佳跟踪的给定参考轨迹的问题。外反馈回路通过近似解决整个行驶周期的最佳能量管理问题来生成能量参考轨迹的电池状态。使用专门的投影牛顿法可以解决与内环和外环相关的后退层优化问题。将控制器与基于Pontryagin最小原理的现有方法进行比较,并讨论了对未来驾驶周期的不精确知识的影响。本文包含详细的仿真研究:首先,这评估了相关的无不确定性方法的最佳性及其计算负荷。其次,说明了对未来驾驶周期的不精确了解的影响。

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