An EAFOGI-FLL Based Adaptive Control for Seamless Operation of a Solar Photovoltaic System

Subhadip Chakraborty, Gaurav Modi, Bhim Singh
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Abstract

This paper presents an enhanced adaptive fourth order generalized integrator with frequency locked loop (EAFOGI-FLL) based control that improves the power quality of a solar photovoltaic system (SPVS) in grid-connected mode (GCM) and standalone mode (SAM), ensures seamless operation, makes the grid currents sinusoidal and, also eliminates DC offset. It ensures unity power factor (UPF) operation of the grid to minimize line losses. The control maintains the point of common coupling (PCC) voltages sinusoidal in GCM and SAM even in the presence of nonlinear loads. The FLL enables effective frequency tracking with grid frequency variations and makes the system adaptive. The SPVS is run in maximum power point tracking (MPPT) mode in GCM and, with an improved control in SAM to ensure power balance. The system is analyzed using a developed simulink model in different conditions.
基于EAFOGI-FLL的太阳能光伏系统无缝运行自适应控制
本文提出了一种基于锁频环(EAFOGI-FLL)控制的增强型自适应四阶广义积分器,改善了并网模式(GCM)和独立模式(SAM)下太阳能光伏系统(SPVS)的电能质量,保证了系统的无缝运行,使电网电流呈正弦,并消除了直流偏置。它保证了电网的统一功率因数(UPF)运行,以最大限度地减少线路损耗。即使在非线性负载存在的情况下,控制也能保持GCM和SAM的共耦合点(PCC)电压的正弦波。FLL能够有效地跟踪电网频率变化,使系统具有自适应性。SPVS在GCM中以最大功率点跟踪(MPPT)模式运行,并在SAM中改进控制以确保功率平衡。利用开发的simulink模型对系统进行了不同工况下的分析。
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