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Logical control approach to fuel efficiency optimization for commuting vehicles

机译:通勤车辆燃油效率优化的逻辑控制方法

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摘要

A novel gearshift control approach for improving the fuel efficiency of the conventional commuting vehicles is addressed in this paper, where the optimization problem for gear control is formulated in the framework of stochastic logical dynamic system. By extracting the stochastic features of the driver acceleration intention in the specific route, the Markov process model is deduced and then applied for the optimization algorithm. Based on the logical system framework, the finite horizon optimization problem is solved by means of the algebraic expression of the dynamic programming algorithm with a lower computational complexity, thereby resulting in an optimal gearshift decision law in statistical sense. The software simulation and engine-in-the-loop based experiment results demonstrate the better fuel economy performance can be achieved by the proposed logic control scheme.
机译:该文提出了一种提高传统通勤车辆燃油效率的新型换档控制方法,在随机逻辑动力系统框架下提出了档位控制的优化问题。通过提取特定路线中驾驶员加速意向的随机特征,推导了马尔可夫过程模型,并将其应用于优化算法。基于逻辑系统框架,利用计算复杂度较低的动态规划算法的代数表达式求解有限视界优化问题,从而得到统计意义上的最优换档决策律。软件仿真和基于发动机在环的实验结果表明,所提出的逻辑控制方案可以实现更好的燃油经济性。

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