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Optimal gear shift strategies for fuel economy and driveability

机译:最佳的换档策略可实现燃油经济性和驾驶性能

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摘要

This paper aims at designing optimal gear shift strategies for conventional passenger vehicles equipped with discrete ratio transmissions. In order to study quantitatively an optimal trade-off between the fuel economy and the driveability, the vehicle driveability is addressed in a fuel-optimal gear shift algorithm based on dynamic programming by three methods: method I, weighted inverse of power reserve; method 2, constant power reserve; method 3, variable power reserve. Furthermore, another method based on stochastic dynamic programming is proposed to derive an optimal gear shift strategy over a number of driving cycles in an average sense, hence taking into account the vehicle driveability. In contrast with the dynamic-programming-based strategy, the obtained gear shift strategy based on stochastic dynamic programming is real time implementable. A comparative analysis of all proposed gear shift methods is given in terms of the improvements in the fuel economy and the driveability. The variable-power-reserve method achieves the highest fuel economy without sacrificing the driveability.
机译:本文旨在为配备离散速比变速器的常规乘用车设计最佳换挡策略。为了定量研究燃料经济性和驾驶性能之间的最佳折衷,在基于动态规划的燃料最优变速算法中,通过三种方法解决了车辆的驾驶性能:方法I,加权储能的倒数;方法二,恒定动力储备;方法3,可变动力储备。此外,提出了另一种基于随机动态规划的方法,以平均意义上推导多个驾驶循环中的最佳换档策略,从而考虑了车辆的驾驶性能。与基于动态编程的策略相比,基于随机动态编程获得的变速策略是实时可实现的。对所有建议的变速方法进行了比较分析,以提高燃油经济性和驾驶性能。可变动力储备方法在不牺牲驾驶性能的情况下实现了最高的燃油经济性。

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