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Fuzzy adaptive proportional-integral-derivative controller with dynamic set-point adjustment for maximum power point tracking in solar photovoltaic system

机译:具有动态设定点调节功能的模糊自适应比例-积分-微分控制器,用于跟踪太阳能光伏系统中的最大功率点

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摘要

A novel fuzzy adaptive proportional-integral-derivative (PID) control strategy with online set-point tracking is presented for maximum power point tracking (MPPT) in solar photovoltaic (PV) system in this paper. The range of the membership functions of the fuzzy logic for online PID parameter tuner has been optimized using the relay feedback tuning method. The proposed MPPT controller has been designed with online set-point adjustment approach using current, radiation and temperature sensors. Real-time simulations have been carried out on MATLAB?/dSPACE? ds1104 Research and Development control board platform for solar PV system with synchronous buck converter and resistive load. Performance of the proposed techniques has been compared with main existing MPPT techniques viz. perturb and observe, incremental conductance, fuzzy logic, neural network and adaptive neuro-fuzzy inference system-based methods of MPPT. Performance of various techniques has been compared based on tracking efficiency, steady state and dynamic behaviour. Experimental results showed the superiority of the proposed method for tracking maximum power point under rapidly varying solar radiations.
机译:针对太阳能光伏(PV)系统的最大功率点跟踪(MPPT),提出了一种具有在线设定点跟踪的模糊自适应比例-积分-微分(PID)控制策略。在线PID参数调谐器的模糊逻辑的隶属函数范围已使用继电器反馈调节方法进行了优化。拟议的MPPT控制器已设计为使用电流,辐射和温度传感器的在线设定点调整方法。在MATLAB?/ dSPACE?上进行了实时仿真。 ds1104具有同步降压转换器和阻性负载的太阳能光伏系统研发控制板平台。已将所提议技术的性能与现有的主要MPPT技术进行了比较。基于MPPT的摄动和观察,增量电导,模糊逻辑,神经网络和自适应神经模糊推理系统。根据跟踪效率,稳态和动态行为,比较了各种技术的性能。实验结果表明,该方法在快速变化的太阳辐射下跟踪最大功率点的方法具有优越性。

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