Quasi-dynamic hosting capacity in radial distribution feeder

Riki Khomarudin, Kevin Marojahan Banjar-Nahor, N. Hariyanto
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Abstract

The target of massive installation of renewable energy is the focus of this research. Several industrial sectors continue to install photovoltaic rooftop to support green energy. One of the main objectives of this research is to see the maximum impact of installing a photovoltaic rooftop at 1 point of customer and spread capacity for each customer. This research uses a radial distribution network system that closely resembles the distribution network in Indonesia, where the load profile considers the load characteristics of industrial, commercial, and residential loads. This study uses the line equation theorem method to calculate the voltage rises by considering two current measurement points: the current at the end and the current at the base. The obtained voltage rise is then accumulated to be summed up with the customer afterward. The results are obtained by considering three scenarios: 1) voltage limits, 2) voltage limits and line loading, and 3) voltage limits, thermal, and harmonics in accordance with regulations. The obtained results are closely aligned with the simulations performed on the hosting capacity software such as DIgSILENT.
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径向配料器准动态承载能力
大规模安装可再生能源的目标是本研究的重点。一些工业部门继续安装光伏屋顶,以支持绿色能源。这项研究的主要目标之一是观察在客户的1个点安装光伏屋顶的最大影响,并为每个客户分配容量。这项研究使用了一个径向配电网系统,该系统与印度尼西亚的配电网非常相似,其中的负荷分布考虑了工业、商业和住宅负荷的负荷特征。本研究使用线方程定理方法,通过考虑两个电流测量点:端部电流和基部电流来计算电压上升。所获得的电压上升然后被累积,以便随后与客户相加。根据规定,通过考虑三种情况获得结果:1)电压限制,2)电压限制和线路负载,以及3)电压限制、热和谐波。所获得的结果与在主机容量软件(如DIgSILENT)上进行的模拟非常一致。
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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CiteScore
0.70
自引率
0.00%
发文量
10
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