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Transient Stability Analysis of a Hybrid Grid-Connected Battery-PV in Baubau Power System

机译:BAUBAU电力系统混合网电池PV的瞬态稳定性分析

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The electrical energy produced by fossil fuel has two disadvantages: the environment pollution, and nonrenewable nature. To overcome these problems, Photovoltaic (PV) technology has been developed. But, the characteristics of the PV output power depending on the intensity of the existing sunlight, so it can cause instability in the system. This instability can be minimized by combining a PV system with a battery. This study aims to conduct transient stability analysis on the Baubau power system when a 10 MWac hybrid PV-battery power plant is added. In this study, the power flow and stability analysis of the Baubau system was simulated using ETAP software and the energy mix from power plants was simulated using Homer Pro software. From the simulation result can be concluded that installation of 10 MWac PV + 4 MWh batteries in the Baubau System did not harm the overall system stability. The hybrid system can increase the power capacity and installed power of the system.
机译:化石燃料产生的电能有两个缺点:环境污染和不可再生的性质。为了克服这些问题,已经开发了光伏(PV)技术。但是,PV输出功率的特性根据现有阳光的强度,因此它可能在系统中造成不稳定。通过将PV系统与电池组合来最小化这种不稳定性。本研究旨在在加入10 MWAC混合PV电池电厂时对Baubau电力系统进行瞬态稳定性分析。在这项研究中,使用ETAP软件模拟了Baubau系统的电流和稳定性分析,并使用Homer Pro软件模拟了从发电厂的能量混合。从仿真结果可以得出结论,在Baubau系统中安装10 MWAC PV + 4 MWH电池没有损害整体系统稳定性。混合系统可以提高系统的电力容量和安装功率。

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