The Study of Motion Control Algorithm for the Wing Mechanism of Solar-Powered Electric Vehicle

Mengjun Song, Jinggong Wei, Yaming Wang, Jianfeng Cheng
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Abstract

The paper focuses on the control system of pure solar powered electric vehicle Tianjin No.2 and proposes a double fuzzy controller scheme based on PID control system. The method can provide certain algorithm support for the stable and intelligent operation of photovoltaic support mechanisms with large aspect ratio and large light receiving area. The paper is based on the traditional PID control method of DC motors, proposing a fuzzy processing scheme for three parameters of PID, i.e. proportion, integration, and differentiation. At the same time, the sensing signals from wind and sunlight are also computed with fuzzy processing. Finally, through reasonable determination of parameters, adjustment of fuzzy control decisions, and simulation verification, the results show that the proposed method can provide theoretical and practical support for the stable and intelligent movement of this type of support mechanism.
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太阳能电动汽车机翼机构的运动控制算法研究
本文以纯太阳能电动汽车天津 2 号的控制系统为研究对象,提出了一种基于 PID 控制系统的双模糊控制器方案。该方法可为大长宽比、大受光面积的光伏支撑机构的稳定智能运行提供一定的算法支持。本文在直流电机传统 PID 控制方法的基础上,针对 PID 的比例、积分、微分三个参数提出了模糊处理方案。同时,对风力和阳光的感应信号也进行了模糊处理计算。最后,通过参数的合理确定、模糊控制决策的调整以及仿真验证,结果表明所提出的方法可以为该类型支撑机构的稳定和智能运动提供理论和实践支持。
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