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Global Optimal Control Strategy of PHEV Based on Dynamic Programming

机译:基于动态规划的插电式混合动力汽车全局最优控制策略

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Dynamic programming algorithm is considered to be the most effective method to solve the global optimal energy management strategy of hybrid electric vehicles. This paper takes parallel hybrid electric vehicle as an example, the fuel economy control mathematical model and dynamic programming (DP) algorithm equation are established to solve the global optimal control strategy. Shift limitation and engine start-stop limitation are added into the cost function to improve the driving comfort. In order to solve the problem of the dimension disaster of dynamic programming algorithm, Matlab is used to program in the form of high-dimensional matrix, which can greatly shorten the computation time of dynamic programming. The results of simulation on diverse driving cycles show that the dynamic programming has significant advantages over rule-based control strategy in fuel economy improvment.
机译:动态规划算法被认为是解决混合动力汽车全局最优能量管理策略的最有效方法。本文以并联混合动力汽车为例,建立了燃油经济性控制数学模型和动态规划算法方程,以求解全局最优控制策略。在成本功能中增加了变速限制和发动机起停限制,以提高驾驶舒适性。为了解决动态规划算法的尺寸灾难性问题,采用Matlab以高维矩阵形式进行编程,可以大大缩短动态规划的计算时间。在不同驾驶循环上的仿真结果表明,在燃油经济性改善方面,动态规划与基于规则的控制策略相比具有显着优势。

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