Performance Analysis of a Solar-Battery-Fuel cell based Micro-grid System

Subir Datta, S. Lalngaihawma, Robert Singh, S. Deb, M. S. Devi, S. Samanta, S. Roga
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Abstract

The paper presents a solar-PV, fuel cell and battery based stand-alone system and its associated control schemes to study the performance of the system under varying load and source conditions. Coordinate control scheme is used to manage the power flow among all the units of the considered system and also to maintain constant voltage across the common DC link capacitor. Droop control algorithm is incorporated with the control scheme of the load side converter (LSC) for regulating the magnitude of AC output voltage and load frequency to their rated values at different scenarios. The study model is implemented in MATLAB/simulink environment and the simulation is done extensively. Simulation responses are analyzed and results show that the study system works as per the control schemes aimed at and it gives good dynamic performance under different conditions.
基于太阳能电池-燃料电池的微电网系统性能分析
本文提出了一种基于太阳能光伏、燃料电池和蓄电池的独立系统及其相关控制方案,研究了该系统在不同负载和电源条件下的性能。采用协调控制方案来管理系统中所有单元之间的功率流,并保持直流公共链路电容器上的电压恒定。将下垂控制算法与负载侧变流器(LSC)的控制方案相结合,在不同场景下将交流输出电压和负载频率的大小调节到其额定值。研究模型在MATLAB/simulink环境下实现,并进行了大量的仿真。仿真结果表明,所设计的控制系统完全符合所设计的控制方案,在不同工况下均具有良好的动态性能。
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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