频率响应式住宅热水器的控制与协调

T. Williams, K. Kalsi, M. Elizondo, L. Marinovici, R. Pratt
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引用次数: 14

摘要

需求侧频率控制可以补充传统的发电机控制,以在面对与可再生能源相关的不确定性和可变性增加时保持大型电力系统的稳定性。本文提出了一种基于频率的分层负载控制策略,该策略使用监督器灵活调整控制增益,以分散的方式响应最终用途负载,以帮助在区域级和互联级满足NERC BAL-003-1频率响应标准。负载模型经过校准,并用于PowerWorld模拟美国西部电网(WECC)中的频率响应热水器群体模型。所提出的设计在实验室环境下的物理热水器上进行了实施和演示。在渗透水平低于15%的情况下,WECC所需频率响应的很大一部分可以由电热水器单独提供,同时有助于互联和区域水平的NERC要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control and coordination of frequency responsive residential water heaters
Demand-side frequency control can complement traditional generator controls to maintain the stability of large electric systems in the face of rising uncertainty and variability associated with renewable energy resources. This paper presents a hierarchical frequency-based load control strategy that uses a supervisor to flexibly adjust control gains that a population of end-use loads respond to in a decentralized manner to help meet the NERC BAL-003-1 frequency response standard at both the area level and interconnection level. The load model is calibrated and used to model populations of frequency-responsive water heaters in a PowerWorld simulation of the U.S. Western Interconnection (WECC). The proposed design is implemented and demonstrated on physical water heaters in a laboratory setting. A significant fraction of the required frequency response in the WECC could be supplied by electric water heaters alone at penetration levels of less than 15%, while contributing to NERC requirements at the interconnection and area levels.
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