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The study of economic effects when different distributed generators (DG) connected to a distribution system

机译:不同分布式发电机(DG)连接到配电系统时的经济效应研究

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This paper presents the study and analysis of an economic impact on distributed generator (DG) installation connected to the 22-kV distribution system of the Thanyaburi substation of Provincial Electricity Authority (PEA), Thailand, which covers 8.18 km of distribution line distance and has four BUS connected with DG. In order to determine the optimal size and type of DG, the DIgSILENT PowerFactory software is used to simulate the DG connected to the distribution system. The DG used in case studies has three types: solar power, wind power, and biomass; each type has a size varied from 1-8 MW. For economic evaluation, the indices of discount payback period (DPB) and internal rate of return (IRR) are employed. The results indicate that solar power and wind power which are high power generation can be more achievable economic performance than low power one due to better the ratio between investment costs and megawatts. However, the biomass distributed generation of 1 MW gives the best DPB (4.78 years) and IRR (25.27%), as well as more efficient in electrical generation than the solar power and wind power.
机译:本文介绍了对泰国省电力管理局(PEA)Thanyaburi变电站的22 kV配电系统所连接的分布式发电机(DG)装置的经济影响的研究和分析,该系统覆盖了8.18 km的配电线距离,并且具有与DG连接的四个BUS。为了确定DG的最佳尺寸和类型,使用DIgSILENT PowerFactory软件模拟连接到配电系统的DG。案例研究中使用的DG具有三种类型:太阳能,风能和生物质。每种类型的尺寸从1-8兆瓦不等。为了进行经济评估,采用了折现回收期(DPB)和内部收益率(IRR)的指标。结果表明,由于投资成本与兆瓦比之间的比例更高,作为高发电量的太阳能和风能比低功率能更可实现经济绩效。但是,分布式发电的1兆瓦可提供最佳的DPB(4.78年)和IRR(25.27%),并且在发电方面比太阳能和风能更有效。

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