Performance analysis of wind-photovoltaic-battery based DC microgrid setup for off-grid applications

P. Shaikh, Tariqullah Jan, Asif Raza Solangi, Zohaib Hussain Leghari, Ashfaque Ahmed Baloch, M. A. Uqaili
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引用次数: 9

Abstract

This paper presents the performance analysis of an integrated renewable energy based power generation system with DC micro grid setup. The designed system comprises of wind generator (WG) system, photovoltaic (PV) panels, battery, charge controllers and DC loads as its major components. PV panels have the major contribution of supply hence it is the primary source for the designed system. WG acts as a secondary source because of its lower contribution in the supply. Lead acid battery is used as an energy storage system (ESS) to make the system more reliable by fulfilling the supply demand gap between the source and load. The proposed system presents a low cost, simple design integrated system based on basic electronic components with key features of stable voltages at load terminals, overvoltage and low voltage protection for load, back feed power flow protection for sources and overcharge and discharge protection for the battery backup. Real time results have been presented and proved that voltages have been maintained at the load terminals with small variation of 10–12%. This makes the system efficient and does not create much adverse effects on the load performance. The proposed system is suitable for off-grid remote areas facilities which offers reliable, cost effective and efficient system that maintains the voltage stability and improves the battery life.
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基于风电光伏电池的离网直流微电网装置性能分析
本文对具有直流微电网的可再生能源发电系统进行了性能分析。设计的系统主要由风力发电系统、光伏板、蓄电池、充电控制器和直流负载等组成。光伏板具有主要的供应贡献,因此它是设计系统的主要来源。WG作为次要来源,因为它在供应中的贡献较低。采用铅酸蓄电池作为储能系统,通过填补源负荷之间的供需缺口,提高系统的可靠性。该系统是一个基于基础电子元件的低成本、设计简单的集成系统,其主要特点是负载端电压稳定、负载过压和低压保护、电源反馈流保护和备用电池过充放电保护。给出了实时结果,并证明负载端电压保持在10-12%的小变化范围内。这使得系统高效,不会对负载性能产生太多不利影响。该系统适用于离网偏远地区的设施,提供可靠、经济、高效的系统,保持电压稳定性,提高电池寿命。
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