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Power Quality Challenges Associated with Distributed Generation Planning: A Simulation-based Demonstration

机译:与分布式发电计划相关的电能质量挑战:基于仿真的演示

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Increased energy crisis caused by rapid industrial growth, awareness towards environmental issues and technical constraints of distribution networks, have given significant boost to the application of distributed generation (DG) in the last decades and motivation behind that being the associated opportunities such as power loss minimization, voltage quality improvement, enhanced reliability, enhanced power transfer capacity, potential environmental impacts and many more. Nevertheless, availing these opportunities up to maximum extent is a stimulating task for the Distribution Network Operators (DNOs) due to very less control over DG owners who independently plan the placement of DGs according to fuel type, capacity and location etc. as per the availability and erroneous allocation may also negatively affect economic operation and technical performance of the system. Appropriate planning of DGs only can assist DNOs in achieving the aforementioned advantages to their level best. The objective of this paper is to throw light on power quality (PQ) challenges associated with the planning of distributed generation systems based on renewable as well as non-renewable sources. For demonstration purposes, planning of DG supported by conventional fuel as well as renewable energy has been attempted on a modified IEEE 5 bus test system in Matlab/Simulink. This article is of great importance for researchers as well as power industry professionals for getting an insight into challenges associated with distributed generation planning in modern power distribution networks.
机译:工业快速增长,对环境问题的认识以及配电网络的技术约束引起的能源危机增加,在过去几十年中极大地推动了分布式发电(DG)的应用,其背后的动机是诸如减少电力损耗等相关机会,电压质量的提高,可靠性的提高,功率传输能力的增强,潜在的环境影响等等。尽管如此,最大程度地利用这些机会对于配电网络运营商(DNO)而言是一项激励人心的任务,因为对DG所有者的控制较少,他们根据可用性,燃料类型,容量和位置等独立计划DG的布置错误的分配也可能对系统的经济运行和技术性能产生负面影响。 DG的适当计划只能帮助DNO最大限度地发挥上述优势。本文的目的是阐明与基于可再生和不可再生能源的分布式发电系统规划相关的电能质量(PQ)挑战。出于演示目的,已经在Matlab / Simulink中经过改进的IEEE 5总线测试系统上尝试了由常规燃料以及可再生能源支持的DG的计划。本文对于研究人员以及电力行业专业人员了解现代配电网络中与分布式发电计划相关的挑战非常重要。

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