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A Multilevel Inverter for Photovoltaic Systems With Fuzzy Logic Control

机译:具有模糊逻辑控制的光伏系统多电平逆变器

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摘要

Converters for photovoltaic (PV) systems usually consist of two stages: a dc/dc booster and a pulsewidth modulated (PWM) inverter. This cascade of converters presents efficiency issues, interactions between its stages, and problems with the maximum power point tracking. Therefore, only part of the produced electrical energy is utilized. In this paper, the authors propose a single-phase H-bridge multilevel converter for PV systems governed by a new integrated fuzzy logic controller (FLC)/modulator. The novelties of the proposed system are the use of a fully FLC (not requiring any optimal PWM switching-angle generator and proportional–integral controller) and the use of an H-bridge power-sharing algorithm. Most of the required signal processing is performed by a mixed-mode field-programmable gate array, resulting in a fully integrated System-on-Chip controller. The general architecture of the system and its main performance in a large spectrum of practical situations are presented and discussed. The proposed system offers improved performance over two-level inverters, particularly at low–medium power.
机译:光伏(PV)系统的转换器通常包括两个阶段:一个DC / DC升压器和一个脉宽调制(PWM)逆变器。这种级联的转换器会带来效率问题,各级之间的相互作用以及最大功率点跟踪问题。因此,仅利用了所产生的电能的一部分。在本文中,作者提出了一种由新型集成模糊逻辑控制器(FLC)/调制器控制的光伏系统单相H桥多电平转换器。拟议系统的新颖之处在于使用了完整的FLC(不需要任何最佳的PWM开关角发生器和比例积分控制器),以及使用了H桥功率共享算法。所需的大多数信号处理都是由混合模式现场可编程门阵列执行的,从而实现了完全集成的片上系统控制器。介绍并讨论了该系统的一般体系结构及其在各种实际情况下的主要性能。拟议的系统提供了优于两级逆变器的性能,尤其是在中低功率情况下。

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