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Effect of load models on assessment of energy losses in distributed generation planning

机译:负荷模型对分布式发电规划中能量损失评估的影响

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Distributed Generation (DG) is gaining in significance due to the keen public awareness of the environmental impacts of electric power generation and significant advances in several generation technologies which are much more environmentally friendly (wind power generation, micro-turbines, fuel cells, and photovoltaic) than conventional coal, oil and gas-fired plants. Accurate assessment of energy losses when DG is connected is gaining in significance due to the developments in the electricity market place, such as increasing competition, real time pricing and spot pricing. However, inappropriate modelling can give rise to misleading results. This paper presents an investigation into the effect of load models on the predicted energy losses in DG planning. Following a brief introduction the paper proposes a detailed voltage dependent load model, for DG planning use, which considers three categories of loads: residential, industrial and commercial. The paper proposes a methodology to study the effect of load models on the assessment of energy losses based on time series simulations to take into account both the variations of renewable generation and load demand. A comparative study of energy losses between the use of a traditional constant load model and the voltage dependent load model and at various load levels is carried out using a 38-node example power system. Simulations presented in the paper indicate that the load model to be adopted can significantly affect the results of DG planning.
机译:分布式发电(DG)由于公众对发电的环境影响的敏锐意识以及几项更加环保的发电技术(风力发电,微型涡轮机,燃料电池和光伏发电)的重大进步而变得越来越重要)比传统的燃煤,石油和天然气电厂。由于电力市场的发展,例如竞争加剧,实时定价和现货定价,随着DG的连接,对能量损失的准确评估变得越来越重要。但是,不适当的建模会引起误导的结果。本文介绍了负荷模型对DG规划中的预测能量损失的影响。在简要介绍之后,本文提出了一个详细的电压相关负载模型,供DG规划使用,其中考虑了三类负载:住宅,工业和商业。本文提出了一种方法,该方法可基于时间序列模拟研究负荷模型对能源损失评估的影响,同时考虑可再生能源发电量和负荷需求的变化。使用38个节点的示例电力系统,对使用传统恒定负载模型和依赖电压的负载模型以及在各种负载水平下的能量损失进行了比较研究。本文提供的仿真结果表明,要采用的负载模型可能会严重影响DG规划的结果。

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