Reliability study of hybrid PV-wind power systems to isolated micro-grid

S. Dawoud, Xiangning Lin, Jinwen Sun, Q. K. Mohsin, Firas M. F. Flaih, P. Long
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引用次数: 7

Abstract

Micro-grid can be classified as grid connected or isolated. In isolated micro-grid it acts as a small power system with its all part (generation, transmission, and distribution). The main driver for isolated micro-grid is the availability of local energy resources. Hybrid Renewable energy system (HRES) is a combination of one or more renewable resources such as solar Photo Voltaic (PV) and wind turbine (WT) with other technologies such as batteries to supply electric power systems. Solar and wind are clean energy sources with enormous potential to alleviate grid dependence. The HRES is an excellent solution for electrification for rural regions where the grid extension is not economical and difficult in some region in Egypt. This paper study the effect of adding solar PV and WT systems to the micro-grid in order to improve the isolated operation of the micro-grid. The study performs the Loss of Power Supply Probability (LPSP) based on adding the same capacity of solar PV and WT to the isolated micro-grid. The LPSP and the cost of energy (COE) are the two main factors will be introduced. A typical case study of the micro grid system located at Hurghada Egypt will be analyzed in details. The model compute the LPSP will be introduced. The results are presented show the optimal model of solar PV with WT reduce the LPSP and COE of the micro-grid.
光伏-风力混合发电系统对隔离微电网的可靠性研究
微电网可分为并网型和隔离型。在孤立微电网中,它作为一个小的电力系统,包括发电、输电和配电。孤立微电网的主要驱动因素是当地能源的可用性。混合可再生能源系统(HRES)是将太阳能光伏(PV)和风力涡轮机(WT)等一种或多种可再生能源与电池等其他技术相结合来提供电力的系统。太阳能和风能是具有巨大潜力的清洁能源,可以减轻对电网的依赖。HRES是埃及农村地区电气化的极好解决方案,在埃及的一些地区,电网扩展并不经济且困难。本文研究了在微电网中加入太阳能光伏和WT系统对改善微电网隔离运行的影响。本研究基于在孤立微电网中加入相同容量的太阳能光伏和WT进行了电力供应损失概率(LPSP)计算。LPSP和能源成本(COE)是将要介绍的两个主要因素。本文将详细分析埃及赫尔格达市微电网系统的典型案例。介绍了LPSP的模型计算方法。结果表明,采用小波变换的太阳能光伏发电优化模型降低了微网的LPSP和COE。
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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