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Modelling, simulation and optimisation of robust PV based micro grid for mitigation of reactive power and voltage instability

机译:基于鲁棒的光伏微电网的建模,仿真和优化,可缓解无功功率和电压不稳定性

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This paper proposes a robust H-infinity STATCOM controller for compensating reactive power in standalone micro grid consisting of a PV-Wind-Diesel hybrid system. In order to carry out MATLAB based simulation, a small signal linear model of the stand-alone hybrid power system is considered, comprising of a photo voltaic cell, a DFIG based wind turbine and a diesel generator. Synchronous generator based DG acts as a backup for the hybrid system. Generally these standalone systems experience frequent variation of loads, wind power input and solar radiation, which affect the vital system parameters like reactive power, terminal voltage and frequency to a great extent. These variations of system parameters with variation of load inputs are studied and its impact on overall system stability and reactive power compensation is properly monitored. Furthermore the system performance is improved and the robustness of the controller is enhanced with the incorporation of GA and PSO. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种鲁棒的H-∞STATCOM控制器,用于补偿由PV-Wind-Diesel混合系统组成的独立微电网中的无功功率。为了进行基于MATLAB的仿真,考虑了独立混合动力系统的小信号线性模型,该模型包括一个光伏电池,一个基于DFIG的风力涡轮机和一个柴油发电机。基于同步发电机的DG作为混合系统的备用。通常,这些独立系统的负载,风能输入和太阳辐射会频繁变化,这在很大程度上影响重要的系统参数,例如无功功率,终端电压和频率。研究了系统参数随负载输入的变化而变化的情况,并适当监测了其对整体系统稳定性和无功补偿的影响。此外,通过合并GA和PSO,可以改善系统性能,并增强控制器的鲁棒性。 (C)2016 Elsevier Ltd.保留所有权利。

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