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间歇性
理论(学习稳定性)
计算机科学
风力发电
任务(项目管理)
惯性
功率(物理)
分布式发电
控制工程
可靠性工程
工程类
电压
可再生能源
电气工程
系统工程
物理
机器学习
量子力学
湍流
经典力学
热力学
作者
Mostafa Farrokhabadi,Claudio A. Cañizares,John W. Simpson-Porco,Ehsan Nasr‐Azadani,Lingling Fan,Patricio Mendoza‐Araya,Reinaldo Tonkoski,Ujjwol Tamrakar,Nikos Hatziargyriou,Dimitris T. Lagos,Richard Wies,Mario Paolone,Marco Liserre,Lasantha Meegahapola,Mahmoud Kabalan,Amir H. Hajimiragha,Dario Peralta,Marcelo Elizondo,Kevin P. Schneider,Francis K. Tuffner,James Reilly
出处
期刊:IEEE Transactions on Power Systems
[Institute of Electrical and Electronics Engineers]
日期:2020-01-01
卷期号:35 (1): 13-29
被引量:482
标识
DOI:10.1109/tpwrs.2019.2925703
摘要
This document is a summary of a report prepared by the IEEE PES Task Force (TF) on Microgrid Stability Definitions, Analysis, and Modeling, IEEE Power and Energy Society, Piscataway, NJ, USA, Tech. Rep. PES-TR66, Apr. 2018, which defines concepts and identifies relevant issues related to stability in microgrids. In this paper, definitions and classification of microgrid stability are presented and discussed, considering pertinent microgrid features such as voltage-frequency dependence, unbalancing, low inertia, and generation intermittency. A few examples are also presented, highlighting some of the stability classes defined in this paper. Further examples, along with discussions on microgrid components modeling and stability analysis tools can be found in the TF report.