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Design and Control Co-Optimization for Hybrid Powertrains: Development of Dedicated Optimal Energy Management Strategy

机译:混合动力技术设计与控制共同优化:开发专用最优能源管理策略

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Computationally-efficient optimal energy-management strategies are required for the optimal design of hybrid electric vehicles with respect to fuel economy and other criteria. In this paper, the novel Selective Hamiltonian Minimization (SHM) technique is introduced. Based on Pontryagin's Minimum Principle, the SHM is developed by explicitly calculating possible optimal control modes, and then selecting the one that minimizes the Hamiltonian function. Parametric analytical models of powertrain components are developed to compute Hamiltonians in closed form. Engine and battery models are further expressed in terms of their main design parameters and technologies thanks to a statistical analysis over several sample components. An example of design optimization is presented to illustrate the effectiveness of the proposed approach.
机译:有关燃料电动汽车的最佳设计,燃料经济性和其他标准,所需的计算上有效的最佳能量管理策略。本文介绍了新颖的选择性哈密尔顿最小化(SHM)技术。基于Pontryagin的最低原理,通过显式计算可能的最佳控制模式,然后选择最小化HAMILTONIAN函数的函数来开发SHM。开发动力总成部件的参数分析模型以计算封闭形式的Hamiltonians。由于多个示例组件的统计分析,其主要设计参数和技术方面进一步表达了发动机和电池型号。提出了设计优化的一个例子来说明所提出的方法的有效性。

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