A Practical Control Methodology for Parallel Plug-In Hybrid Electric Vehicle Powertrains

J. Meisel, W. Shabbir, S. Evangelou
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引用次数: 8

Abstract

This paper presents an original control algorithm for a parallel plug-in hybrid-electric vehicle powertrain. Two operational strategies using this algorithm are designated as EV/CS (battery-only operation followed by charge sustaining operation) and CD/CS (charge depleting blended operation followed by charge sustaining operation) with the same control algorithm used throughout both. An algebraic mapping of three observable variables outputs a single motor torque-command that can either propel or regeneratively brake the vehicle. This mapping is on-line feasible in real time, avoiding the use of look-up tables or some computationally complex optimization approach involving searches over an admissible control space. Another important feature of this methodology is that the highly developed engine and transmission controls of non-hybrid powertrains are essentially maintained. Using a Simulink model, the fuel economy and SOC (state-of-charge) as a function of driving distance for both strategies are presented. Most importantly, results of recorded on-road SOC data are included that shows practicality on a real vehicle in a real driving situation over 96 miles. Also presented are simulated and real driving acceleration results.
并联插电式混合动力汽车动力系统的实用控制方法
提出了一种新颖的并联插电式混合动力汽车动力系统控制算法。采用该算法的两种操作策略分别为EV/CS(纯电池操作+电量维持操作)和CD/CS(电量耗尽混合操作+电量维持操作),两者均采用相同的控制算法。三个可观察变量的代数映射输出单个电机扭矩命令,该命令可以推动或再生制动车辆。这种映射是实时在线可行的,避免了使用查找表或一些计算复杂的优化方法,包括在可接受的控制空间上进行搜索。这种方法的另一个重要特点是,非混合动力系统的高度发达的发动机和变速箱控制基本上得到了保留。利用Simulink模型,给出了两种策略的燃油经济性和荷电状态(SOC)作为行驶距离的函数。最重要的是,该系统包含了在真实车辆上行驶96英里的实际SOC数据记录结果。并给出了仿真和实际行驶加速度结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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