Interconnection System Simulation Analysis of Transient Micro-grid Stability in Indonesia

A. Ramelan, Chico Hermanu Brillianto A., F. Adriyanto, M. Ibrahim, Gilang Satria Ajie, Ayu Latifah
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Abstract

Global economic development causes higher energy demand. The superiority of technology in distributed power generation from renewable energy sources is a solution to these problems. The writers designed a system modeling in ETAP software to design a micro-grid interconnection system that utilized the potential sources of solar and wind energy in Indonesia. This design is combined with models in the ETAP software such as wind turbine, photovoltaic, inverter, energy storage, generator, user-side loads, industrial system loads, transmission-distribution, transformers, and conventional power grid. The simulation of the micro-grid interconnection system is designed in operating conditions in order to analyze the load flow and transient stability analysis when a three-phase fault occurs on the main bus. This system is modeled in graphical form to determine the effect of errors on stress recovery to return to normal operating conditions. The use of wind turbine in a micro-grid system causes the transient stability conditions in the main bus voltage to fluctuate. To maintain calm on the main bus, a variable picth control setting is required on the wind turbine generator. The effect of energy storage on the micro-grid interconnection system in the event of an error can reduce the voltage drop on the main bus.
印尼微电网暂态稳定性的互联系统仿真分析
全球经济发展导致能源需求上升。可再生能源分布式发电的技术优势是解决这些问题的一个途径。作者在ETAP软件中设计了一个系统建模,以设计一个利用印度尼西亚太阳能和风能潜在资源的微电网互联系统。本设计结合ETAP软件中的风电、光伏、逆变器、储能、发电机、用户侧负荷、工业系统负荷、输配电、变压器、常规电网等模型。设计了微电网并网系统运行工况仿真,分析了主母线发生三相故障时的负荷潮流和暂态稳定分析。该系统以图形形式建模,以确定误差对应力恢复的影响,以恢复正常的操作条件。风力发电机组在微电网系统中的使用,会引起主母线电压的暂态稳定条件波动。为了保持主母线上的平静,需要在风力发电机上设置可变间距控制设置。在微电网并网系统出现误差时,储能对系统的影响可以减小主母线上的电压降。
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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