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Adaptive Load Frequency Control of a Grid Connected Solar PV System

机译:并网太阳能光伏系统的自适应负载频率控制

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摘要

This paper presents an adaptive load-frequency control scheme for a grid-connected solar PV system which supplies a load locally. The grid is meant to complement the solar Photo-Voltaic (PV) system ideally, but because of different loading conditions and intermittent nature of the solar PV system grid support becomes necessary. The PV system is integrated to the synchronous generator based grid via power electronic converters which extracts maximum power from solar PV based using Perturb and Observe (P&O) algorithm to get maximum benefit from the PV system. Integration of renewable energy sources tends to reduce the overall inertia of the grid and hence threaten its stability. Also, perturbations on the load side are known to affect the frequency negatively and now with increased penetration of intermittent renewable energy sources, the frequency problem is expected to be aggravated. The proposed frequency control scheme incorporates a Model Reference Adaptive Controller (MRAC) on the grid side to ensure that the grid frequency is restored within a much smaller time post small disturbances on either the load or the generation side. The proposed system is verified using MATLAB-SIMULINK under wide variation in system conditions.
机译:本文提出了一种用于并网太阳能光伏系统的自适应负载频率控制方案,该系统可本地提供负载。电网旨在理想地补充太阳能光伏(PV)系统,但是由于太阳能光伏系统的负载条件和间歇性不同,因此需要电网支撑。光伏系统通过电力电子转换器集成到基于同步发电机的电网中,电力电子转换器使用Perturb and Observe(P&O)算法从太阳能PV中提取最大功率,从而从光伏系统中获得最大收益。整合可再生能源往往会降低电网的整体惯性,从而威胁其稳定性。另外,已知在负载侧的扰动会对频率产生负面影响,现在随着间歇性可再生能源的普及,频率问题有望加剧。所提出的频率控制方案在电网侧并入了模型参考自适应控制器(MRAC),以确保在负载或发电侧出现小干扰后,在更短的时间内恢复电网频率。在系统条件变化很大的情况下,使用MATLAB-SIMULINK对提出的系统进行了验证。

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