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A review on the state of the art of proliferating abilities of distributed generation deployment for achieving resilient distribution system

机译:分布式发电部署扩散能力艺术述要述评实现弹性分布系统

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Distributed Generation has emerged as a prospective solution that is integrated into the system to upgrade the resilience of the distribution system. Apart from providing clean energy, DGs are gaining considerable attention towards contribution to the system in the form of active distribution system realization, islanded micro-grid formulation and resiliency accomplishment, and restoration of distribution system under normal and extreme weather conditions. A brief review of different types of resilience assessment techniques, along with a comparison based on several criteria, including resilience assessment algorithm, graph, methodology, and equations, has been discussed. This paper presents a comprehensive review highlighting the impact and influence of the extreme event on the power system and the role of DG in solving the challenges caused due to these events. This paper aims at highlighting and exploring the anticipated benefits of DG to comprehend the impacts of extreme events on the system. The transformation from conventional sources of generation to Distributed generation holds merit when potentials of DGs are utilized effectively. DGs, with their heterogeneous forms, promisingly increases its utilization as an outstanding solution when optimally sized and sited. This paper presents the state of the art of DG deployment for bringing a wide assortment of advantages of DG integration in the power system network that has not been discussed so far by other researchers. An endeavor has been made to condense the current methodologies and present a detailed discussion with relevant methodologies. This would help researchers gain insight about leveraging renewable DG sources for exploiting the proliferating abilities of DG integration into the system for normal and extreme weather events. (C) 2020 Elsevier Ltd. All rights reserved.
机译:分布式发电已成为一项潜在的解决方案,集成到系统中以升级分配系统的弹性。除了提供清洁能源之外,DGS在积极分配系统实现,岛状微电网配方和弹性成就的形式下对系统的贡献相当关注,并在正常和极端天气条件下恢复分配系统。简要介绍了不同类型的恢复性评估技术,以及基于若干标准的比较,包括恢复力评估算法,图形,方法和方程,包括恢复性评估算法,图形,方法和方程。本文介绍了全面的审查,突出了极端事件对电力系统的影响和影响以及DG在解决因这些事件引起的挑战中的作用。本文旨在突出和探索DG的预期益处,以了解极端事件对系统的影响。当有效地利用DG的电位时,传统的生成来源转换为分布生成的优点。具有异构形式的DGS承诺在最佳尺寸和突出时将其利用作为出色的解决方案。本文介绍了DG部署的最新状态,以便在尚未讨论其他研究人员的电力系统网络中培养了DG集成的广泛优势。努力融合了当前方法,并与相关方法进行了详细的讨论。这将有助于研究人员了解利用可再生DG来源的洞察力,以利用DG整合到正常和极端天气事件系统中的增殖能力。 (c)2020 elestvier有限公司保留所有权利。

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