Control of Solar-battery storage based Micro-grid

Aditya Shrivastava, Rohit, S. Sony, Naman Gupta, P. Paliwal
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Abstract

With the advancements made in renewable energy systems and eventual reduction in cost, renewable sources such as solar and wind are gaining attention. Solar power being abundantly available promises a sustainable solution to growing demands. However, stochastic nature of solar irradiance presents operational challenges. In order to address the need of for proper coordination, this paper presents control of a Solar and battery storage based micro-grid in grid connected mode. PV array is equipped with maximum power point tracking (MPPT) control. The micro-grid is interspersed with battery storage along with charge controller to maintain uncertain generation from solar generators. The grid-side inverter is operated in P-Q control mode. The model has been formulated in MATLAB-Simulink environment. The model has been investigated for two cases (i) Constant load, variable irradiance (ii) Variable load, variable irradiance. The results evidently establish the efficacy of control technique in maintaining voltage, frequency and power balance at PCC.
基于太阳能电池储能的微电网控制
随着可再生能源系统的进步和成本的最终降低,太阳能和风能等可再生能源正受到人们的关注。太阳能的大量使用为日益增长的需求提供了一个可持续的解决方案。然而,太阳辐照度的随机性给操作带来了挑战。为了解决适当协调的需要,本文提出了并网模式下基于太阳能和电池储能的微电网的控制问题。光伏阵列具有最大功率点跟踪(MPPT)控制。微电网中散布着电池存储和充电控制器,以保持太阳能发电机的不确定发电量。并网侧逆变器以P-Q控制方式运行。在MATLAB-Simulink环境下建立了模型。该模型研究了两种情况(1)恒定负荷,变辐照度(2)变负荷,变辐照度。结果表明,控制技术在保持PCC的电压、频率和功率平衡方面是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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