Frequency Profile Improvement of a Microgrid through Aggregated Demand Response

M. S. Zaman, R. Haider, S. Bukhari, Chul-Hwan Kim
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Abstract

The frequency deviation of a system from its nominal value is a significant indicator of the system’s stability. This issue is further highlighted when the system is incorporated with intermittent renewable energy resources. In this work, frequency regulation of a microgrid is achieved by aggregated demand response. The proposed aggregator is implemented in a central controller that controls frequency deviation by manipulating responsive loads. In case of higher frequency deviation, an adaptive control action which is proportional to the magnitude of frequency deviation manipulates a large number of responsive loads to quickly restore the frequency to its nominal range. The amount of manipulated responsive load is reduced by another section of the central controller which deals with minor frequency deviations as well. The proposed control scheme is implemented on a test system and obtained results verify the desired functionality of aggregated demand response controller.
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基于聚合需求响应的微电网频率分布改善
系统与其标称值的频率偏差是系统稳定性的重要指标。当系统与间歇性可再生能源相结合时,这个问题进一步突出。在这项工作中,微电网的频率调节是通过总需求响应来实现的。所提出的聚合器是在一个中央控制器中实现的,该控制器通过操纵响应性负载来控制频率偏差。在频率偏差较大的情况下,一个与频率偏差大小成正比的自适应控制动作操纵大量响应负载,使频率迅速恢复到其标称范围。被操纵的响应负载的数量由中央控制器的另一部分减少,该部分也处理较小的频率偏差。所提出的控制方案在一个测试系统上实现,得到的结果验证了聚合需求响应控制器的预期功能。
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