以最小能量运行为目标的车载储能列车的最优速度和充放电控制

M. Miyatake, K. Matsuda
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引用次数: 19

摘要

本文讨论了轨道车辆总能耗最小的优化运行问题。目前已有许多关于储能装置在列车上应用的研究,但对储能装置控制的最优性研究不够。作者基于一种通用的优化技术——顺序二次规划,建立了数学模型。该方法可以在固定的传递时间和距离条件下确定每个采样点的最优加/减速和电流指令。利用所提出的方法,在某些情况下进行了仿真。由于双电层电容器具有较高的功率密度等优点,本研究采用双电层电容器作为储能器件。最后讨论了控制输入值和能耗值等最优解的趋向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal speed and charge/discharge control of a train with onboard energy storage devices for minimum energy operation
The optimal operation of rail vehicle minimizing total energy consumption is discussed in this paper. Many works on the application of the energy storage devices to trains were reported, however, they did not deal enough with the optimality of the control of the devices. The authors have developed the mathematical model based on a general optimization technique, Sequential Quadratic Programming. The proposed method can determine the optimal acceleration/deceleration and current commands at every sampling point under fixed conditions of transfer time and distance. Using the proposed method, simulations were implemented in some cases. The electric double layer capacitor (EDLC) is assumed as an energy storage device in our study, because of its high power density etc. The trend of optimal solutions such as values of control inputs and energy consumption is finally discussed.
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