Component degradation and system deterioration: An overview of early termination of PV-DG microgrid system

T. D. Atmaja, D. M. Said, S. M. Idrus, A. Fudholi, N. Ahmad, D. Andriani, A. Rajani, S. Mirsaeidi, H. Abimanyu
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引用次数: 1

Abstract

Degradation of components and system failure within the microgrid system is deteriorating the performance of electrification. The aim of this study is to discuss the relationship and connections between issues resulting from degradation and deterioration in the microgrid system, in addition to introducing the prominent impacts which may eventually lead to the premature termination of the microgrid system. This study explored the microgrid degradation and deterioration issues within four microgrid sections: generation section, storage section, transmission section, and distribution section. Subsequently, this study analyzes, derives, and classifies all emerging issues into four types of prominent impacts. The degradation and deterioration invoked many component performance issues into four main damaging outcomes, namely (i) deteriorated transmission line yielded issues regarding expected energy not achieved; (ii) energy deficit and unpredicted blackout come after the depth of discharge (DOD) reduction and invoke a loss of power supply; (iii) a shorter battery life cycle, shorter transformer lifespan, and decreased DG lifetime concluded as a shorter microgrid life expectancy; and (iv) rapid microgridbroke down and the crash of the key component inadvertently fastened the time to failure and gave rise to the early failure of a microgrid system. It is envisaged that the discussion in this study can provide useful mapped information for the researcher, stakeholder, operator, and other parties for thoroughly addressing various degradation and deterioration issues and anticipating the early termination of the microgrid system.
组件退化和系统退化:PV-DG微电网系统提前终止综述
微电网系统内的部件退化和系统故障正在恶化电气化性能。本研究的目的是讨论微网系统退化和劣化所导致的问题之间的关系和联系,并介绍最终可能导致微网系统过早终止的突出影响。本研究探讨了发电段、储能段、输电段和配电段四个微网段的微网退化和劣化问题。随后,本研究对所有新出现的问题进行了分析、推导并归类为四类突出影响。劣化和劣化将许多组件性能问题归结为四种主要的破坏性结果,即(i)劣化的传输线产生了与预期能量有关的问题;(ii)在减低放电深度后出现能源短缺及意外停电,并引致电力供应中断;(iii)电池寿命周期缩短,变压器寿命缩短,DG寿命缩短,微电网预期寿命缩短;(iv)微电网快速崩溃,关键部件的崩溃无意中固定了故障时间,导致微电网系统的早期故障。预计本研究的讨论可以为研究人员、利益相关者、运营商和其他各方提供有用的地图信息,以彻底解决各种退化和退化问题,并预测微电网系统的早期终止。
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
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10
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