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Multicore PSO Operation for Maximum Power Point Tracking of a Distributed Photovoltaic System under Partially Shading Condition

机译:多核PSO操作,用于部分遮阳条件下分布式光伏系统的最大功率点跟踪

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This paper identifies the partial shading problem of a PV module using the one-diode model and simulating the characteristics exhibiting multiple-peak power output condition that is similar to a PV array. A modified particle swarm optimization (PSO) algorithm based on the suggested search-agent deployment, retracking condition, and multicore operation is proposed in order to continuously locate the global maximum power point for the PV system. Partial shading simulation results for up to 16 modules in series/parallel formats are presented. A distributed PV system consisting of up to 8 a-silicon thin film PV panels and also having a dedicated DC/DC buck converter on each of the modules is tested. The converter reaches its steady state voltage output in 10 ms. However for MPPT operation, voltage, and current measurement interval is set to 20ms to avoid unnecessary noise from the entire electric circuit. Based on the simulation and experiment results, each core of the proposed PSO operation should control no more than 4 PV modules in order to have the maximum tracking accuracy and minimum overall tracking time. Tracking for the global maximum power point of a distributed PV system under various partial shading conditions can be done within 1.3 seconds.
机译:本文识别使用单二极管模型的PV模块的部分阴影问题,并模拟表现出类似于PV阵列的多峰值功率输出条件的特性。提出了一种改进的粒子群优化(PSO)算法,基于所建议的搜索代理部署,回想条件和多核操作,以便连续地定位PV系统的全局最大功率点。介绍最多16个模块的部分阴影仿真结果,呈现了串联/并行格式。经测试了由多达8个A-硅薄膜PV面板组成的分布式PV系统,并且还测试了每个模块上的专用DC / DC降压转换器。转换器在10毫秒内达到其稳态电压输出。然而,对于MPPT操作,电压和电流测量间隔被设置为20ms以避免来自整个电路的不必要的噪声。基于仿真和实验结果,所提出的PSO操作的每个核心应控制不超过4个PV模块,以便具有最大的跟踪精度和最小总体跟踪时间。跟踪在各种部分着色条件下的分布式光伏系统的全局最大功率点可以在1.3秒内完成。

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