Transient Analysis of Distributed Generation AC Microgrid using ETAP

Piyush R. Kadukar, P. Shete, S. P. Gawande
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引用次数: 8

Abstract

Amicrogrid is a combination of clusters of distributed generators connected to fulfill the requirement of dedicated load. A microgrid can be operated with standalone or grid connected mode. A microgrid when operated in standalone mode with a limited voltage and power rating is more likely prone to a serious damage due to its unpredictable faults. Load flow, voltage stability & short circuit analysis of a micro-grid is essential for both design and performance monitoring and to ensure reliable microgrid operations. The faults with a continuously varying in nature affects the normal operation of buses and so to the peripherals associated to the micro-grid. The cause and severity of such faults plays a vital role while designing protection scheme in standalone micro-grid as standalone mode has confined generation. In this paper, electrical model of a 52.3 kW Photo-voltaic based micro-grid is developed on Electrical Transient Analysis Program (ETAP) and various transient conditions such as load flow, loss of DG & short circuit analyses are performed. A detailed short circuit analysis puts light on various short circuit conditions and provides useful analysis. ETAP is the most comprehensive analysis platform for the design, simulation, operation, and automation of generation, distribution, and industrial power systems. ETAP also provides the industry leading transient analysis of power system and micro-grid so chosen for this transient analysis study. A short circuit analysis is calculated based onIEC Std. 60909 using ETAP. This paper presents a simulated model of micro-grid with actual system oriented results and analyzes responses of system during fault conditions and various contingencies.
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基于ETAP的分布式交流微电网暂态分析
微电网是由多个分布式发电机组相互连接,以满足专用负荷的要求。微电网可以独立运行,也可以并网运行。微电网在独立运行时,由于其不可预测的故障,在有限的电压和额定功率下,更容易发生严重的损坏。微电网的负荷流、电压稳定性和短路分析对于微电网的设计和性能监测以及确保微电网的可靠运行至关重要。性质不断变化的故障不仅会影响母线的正常运行,也会影响与微电网相关的外设。由于单机微电网存在发电受限的问题,在设计保护方案时,故障的原因和严重程度起着至关重要的作用。本文利用ETAP软件建立了52.3 kW光伏微电网的电气模型,并进行了负荷潮流、DG损耗和短路等各种暂态条件的分析。详细的短路分析阐明了各种短路情况,并提供了有用的分析。ETAP是针对发电、配电和工业电力系统的设计、仿真、运行和自动化的最全面的分析平台。ETAP还为本次暂态分析研究选择的电力系统和微电网提供业界领先的暂态分析。基于iec标准60909,利用ETAP进行了短路分析。本文建立了面向实际系统的微电网仿真模型,分析了系统在故障工况和各种突发事件下的响应。
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