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Comparative analysis of distributed MPPT controllers for partially shaded stand alone photovoltaic systems

机译:部分阴影独立光伏系统的分布式MPPT控制器的比较分析

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摘要

This paper presents a unique combination of an interleaved soft switched boost converter (ISSBC) run by a set of two photovoltaic panel (PV) with a distributed MPPT, suitable to guarantee MPPT even under partial shadowed conditions, managed by an adaptive neuro fuzzy inference system trained by the training data derived from a particle swarm optimization (PSO-ANFIS) unit. The ISSBC is followed by a, single phase cascaded H bridge five-level inverter (CHI) driven by the individual DC outputs of the ISSBC, with selective harmonic elimination scheme to eliminate typically the seventh order harmonics. A comparison of different intelligent distributed maximum power point tracking (MPPT) algorithms for photovoltaic (PV) system under partial shadow conditions is carried out. The use of the ISSBC guarantees mitigation of ripple and it is meant to handle higher currents with minimal switching losses. Simulation was carried out in the Matlab Simulink environment and an experimental verification with a scaled down model validated the proposed scheme. It has been thus established, by both simulation and experimental verification, that the PSO-ANFIS model of distributed MPPT scheme of control outperforms other schemes of control for MPPT.
机译:本文提出了交错软开关升压转换器(ISSBC)的独特组合,该转换器由一组两个光伏面板(PV)和一组分布式MPPT运行,适用于即使在部分阴影条件下也能保证MPPT,由自适应神经模糊推理系统管理由来自粒子群优化(PSO-ANFIS)单元的训练数据进行训练。 ISSBC之后是由ISSBC的单个DC输出驱动的单相级联H桥五电平逆变器(CHI),具有选择性谐波消除方案,通常可以消除七阶谐波。比较了部分阴影条件下光伏(PV)系统的不同智能分布式最大功率点跟踪(MPPT)算法。 ISSBC的使用保证了纹波的减轻,并且它旨在以最小的开关损耗处理更高的电流。在Matlab Simulink环境中进行了仿真,并通过按比例缩小模型进行的实验验证验证了所提出的方案。因此,通过仿真和实验验证,已经建立了分布式MPPT控制方案的PSO-ANFIS模型优于其他MPPT控制方案。

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