Comparative analysis of the effects of renewable energy integration on the utility grid system

G. Mufti, A. Basit, M. Rehman, S. Z. Hassan, Reyyan Ahmad Khan
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引用次数: 6

Abstract

There is an energy crisis in Pakistan due to the gap between demand and supply of electrical energy. This gap between demand and supply of electrical energy is hampering its economic development. In order to overcome this issue there is a need to increase the generation capacity of the country by integrating renewable energy resources in the system. In this paper the working and functioning of H-11 grid system is tested using the power world simulator software. First the grid system is modeled by incorporating the values of the power transformers and the transmission system of the grid. When the grid system is simulated the grid is tested for the four different scenarios of the Distributed Renewable Energy Generation integration. Our simulations show that Distributed Renewable Energy Generation (DREG) improves the voltage profile, reduce feeder losses and increases the reliability of the system by providing power near the consumer at the distribution level. Simulation shows that the optimal placement of DREG is at bus no 7, in case of 1MW (25% of the total feeder load). Simulation results and the comparative analysis of the respective DREG integration show that the H-11 grid is a good option for the integration of DREG.
可再生能源并网对电网系统影响的对比分析
由于电力需求和供应之间的差距,巴基斯坦出现了能源危机。这种电力需求和供应之间的差距阻碍了其经济发展。为了克服这一问题,有必要通过将可再生能源纳入系统来增加该国的发电能力。本文利用电力世界仿真软件对H-11电网系统的工作性能进行了测试。首先,结合电网变压器和输电系统的值对电网系统进行建模。在对电网系统进行仿真时,对电网进行了分布式可再生能源发电集成的四种不同方案的测试。我们的模拟表明,分布式可再生能源发电(DREG)改善了电压分布,减少了馈线损耗,并通过在配电层面向消费者附近提供电力,提高了系统的可靠性。仿真结果表明,在1MW(馈线总负荷的25%)的情况下,DREG的最佳位置为7号母线。仿真结果和各自DREG集成的对比分析表明,H-11电网是DREG集成的较好选择。
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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