Design, Modeling and Study of Inverter Integrated Reactive Power Compensation for Isolated Rural Microgrid

V. K. Singh, Ashu Verma, T. Bhatti
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Abstract

Diesel/Biogas generators are generally accompanied with renewable based isolated system due to the sporadic nature of renewable resources. One of the main difficulties associated with small sized isolated rural system is voltage fluctuation due to small disturbances. The rural load mainly comprises of household lighting, agriculture pumps & equipment and small commercial/industrial blocks. The voltage fluctuation affects the performance as well as the life of the electrical equipment. In this paper an isolated rural microgrid is considered with renewable energy sources being supported by diesel generator. The renewable energy resources are hydro with induction generator and Photo Voltaic System. The system is modeled such that inverter associated with Photo Voltaic System provides reactive power compensation apart from the diesel genset. Accordingly, DC Link capacitor and Inductor associated with PV Inverter are designed. The objective of the system study is to deliver uninterrupted and reliable power supply by maintaining regulation of the voltage. The results are verified with step change in load and step change in input solar power to study the dynamic performance of the system. The modeling has been carried out in Simulink.
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孤立型农村微网逆变集成无功补偿的设计、建模与研究
由于可再生能源的偶发性,柴油/沼气发电机组通常配有可再生能源隔离系统。小型农村隔离系统的主要困难之一是由于小扰动引起的电压波动。农村负荷主要包括家庭照明、农业泵和设备以及小型商业/工业块。电压波动不仅影响电气设备的使用性能,而且影响其使用寿命。本文考虑了采用柴油发电机支持可再生能源的孤立型农村微电网。可再生能源是带感应发电机的水力发电和光伏发电系统。该系统的建模使得与光伏系统相关联的逆变器除柴油发电机组外还提供无功补偿。据此,设计了与光伏逆变器配套的直流链路电容和电感器。系统研究的目的是通过保持电压的调节来提供不间断和可靠的电力供应。通过负载阶跃变化和输入太阳能功率阶跃变化对结果进行验证,研究系统的动态性能。在Simulink中进行了建模。
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