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Powertrain control of a solar photovoltaic-battery powered hybrid electric vehicle

机译:太阳能光伏电池混合动力电动汽车的动力总成控制

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This paper proposes a powertrain controller for a solar photovoltaic battery powered hybrid electric vehicle (HEV). The main objective of the proposed controller is to ensure better battery management, load regulation, and maximum power extraction whenever possible from the photovoltaic panels. The powertrain controller consists of two levels of controllers named lower level controllers and a high-level control algorithm. The lower level controllers are designed to perform individual tasks such as maximum power point tracking, battery charging, and load regulation. The perturb and observe based maximum power point tracking algorithm is used for extracting maximum power from solar photovoltaic panels while the battery charging controller is designed using a PI controller. A high-level control algorithm is then designed to switch between the lower level controllers based on different operating conditions such as high state of charge, low state of charge, maximum battery current, and heavy load by respecting the constraints formulated. The developed algorithm is evaluated using theoretical simulation and experimental studies. The simulation and experimental results are presented to validate the proposed technique.
机译:本文提出了一种用于太阳能光伏电池驱动的混合动力汽车(HEV)的动力总成控制器。所提出的控制器的主要目的是确保更好的电池管理,负载调节以及在可能的情况下从光伏面板中获取最大功率。动力总成控制器包括两个级别的控制器,分别称为低级控制器和高级控制算法。低层控制器设计用于执行单独的任务,例如最大功率点跟踪,电池充电和负载调节。基于扰动和观测的最大功率点跟踪算法用于从太阳能光伏板中提取最大功率,而电池充电控制器是使用PI控制器设计的。然后设计一种高级控制算法,以根据不同的操作条件(例如高电量状态,低电量状态,最大电池电流和重载),通过考虑制定的约束条件,在低级控制器之间进行切换。使用理论模拟和实验研究对开发的算法进行评估。仿真和实验结果被提出来验证所提出的技术。

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