基于PI控制器的电池-超级电容器电流模糊监控在电动汽车中的应用

Adnan Rafi Al Tahtawi, Muhammad Reihan Iskandar, S. Yahya, Toto Tohir, D. Aming
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引用次数: 0

摘要

电池超级电容器作为混合电源(HPS)的配置是克服电池寿命限制的一种解决方案,例如在电动汽车中。当添加超级电容器时,为了实现电池节能,需要一种控制方案。提出了一种基于模糊监督控制(FSC)的电池-超级电容器电流共享控制方案。FSC的设计是根据负载的电流要求来确定电池和超级电容器需要放电的电流。FSC的输出将产生一个参考电流,然后在主闭环控制中使用比例积分(PI)控制器进行控制。然后用占空比形式的控制信号通过DC/DC转换器调节电池-超级电容器电流。该控制方案采用电阻性负载变化场景进行了仿真和实验测试。结果表明,电池-超级电容电流可以根据负载情况进行控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Battery-Supercapacitor Current Control Using Fuzzy Supervisory with PI Controller for Electric Vehicle Application
The configuration of the battery-supercapacitor as a hybrid power source (HPS) is one solution to overcome the limitations of battery life, such as in an electric vehicle. To achieve battery energy savings when a supercapacitor is added, a control scheme is needed. This paper proposes a battery-supercapacitor current sharing control scheme using Fuzzy Supervisory Control (FSC). The FSC is designed to determine how much current of the battery and supercapacitor need to discharge based on the current requirement of the load. The output of the FSC will produce a reference current which is then controlled in the main closed-loop control using a Proportional-Integral (PI) controller. The control signal in the form of a duty cycle is then used to regulate the battery-supercapacitor current through a DC/DC converter. This control scheme is tested using a resistive load change scenario both simulation and experimental. The results show that the battery-supercapacitor current can be controlled according to the loading conditions.
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