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Energy Optimal Control Strategy of PHEV Based on PMP Algorithm

机译:基于PMP算法的PHEV能量最优控制策略。

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摘要

Under the global voice of "energy saving" and the current boom in the development of energy storage technology at home and abroad, energy optimal control of the whole hybrid electric vehicle power system, as one of the core technologies of electric vehicles, is bound to become a hot target of "clean energy" vehicle development and research. This paper considers the constraints to the performance of energy storage system in Parallel Hybrid Electric Vehicle (PHEV), from which lithium-ion battery frequently charges/discharges, PHEV largely consumes energy of fuel, and their are difficulty in energy recovery and other issues in a single cycle; the research uses hthium-ion battery combined with super-capacitor (SC), which is hybrid energy storage system (Li-SC HESS), working together with internal combustion engine (ICE) to drive PHEV. Combined with PSO-PI controller and Li-SC HESS internal power limited management approach, the research proposes the PHEV energy optimal control strategy. It is based on revised Pontryagin's minimum principle (PMP) algorithm, which establishes the PHEV vehicle simulation model through ADVISOR software and verifies the effectiveness and feasibility. Finally, the results show that the energy optimization control strategy can improve the instantaneity of tracking PHEV minimum fuel consumption track, implement energy saving, and prolong the life of lithium-ion batteries and thereby can improve hybrid energy storage system performance.
机译:在“节能”的全球呼声和当前国内外储能技术发展的热潮下,作为电动汽车的核心技术之一的整个混合动力汽车动力系统的能量最优控制必将成为“清洁能源”汽车发展和研究的热点。本文考虑了并联混合动力汽车(PHEV)储能系统性能的制约因素,锂离子电池经常通过这种方式进行充电/放电,PHEV大量消耗燃料能量,并且它们难以实现能量回收以及其他问题。一个周期;该研究使用了结合了超级电容器(SC)的锂离子电池,超级电容器(SC)是混合储能系统(Li-SC HESS),与内燃机(ICE)共同驱动了PHEV。结合PSO-PI控制器和Li-SC HESS内部功率限制管理方法,提出了PHEV能量最优控制策略。它基于改进的Pontryagin最小原理(PMP)算法,该算法通过ADVISOR软件建立了PHEV汽车仿真模型,并验证了其有效性和可行性。最后,结果表明,能量优化控制策略可以提高跟踪PHEV最小油耗轨迹的瞬时性,实现节能,延长锂离子电池的寿命,从而提高混合动力储能系统的性能。

著录项

  • 来源
    《Journal of control science and engineering》 |2017年第1期|6183729.1-6183729.11|共11页
  • 作者

    Tiezhou Wu; Yi Ding; Yushan Xu;

  • 作者单位

    Hubei Collaborative Innovation Center for High-Efficiency Utilization of Solar Energy, Hubei University of Technology, Wuhan 430068, China;

    Hubei Collaborative Innovation Center for High-Efficiency Utilization of Solar Energy, Hubei University of Technology, Wuhan 430068, China;

    Hubei Collaborative Innovation Center for High-Efficiency Utilization of Solar Energy, Hubei University of Technology, Wuhan 430068, China;

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