Optimization of Volt-Watt Control Parameters to Maximize Power Injection by DERs

Yagoob Alsharief
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引用次数: 1

Abstract

In the last two decades, the number of distributed energy resources (DERs) deployed in power systems has increased significantly. Although the total energy supplied by DERs is still less than the total annual load demand, their instantaneous power output can exceed the demand of the system at certain times. That leads to rising in the voltage magnitude and may result in a violation of the system's voltage limits. To combat this issue, a volt-watt control capability is required for systems with high DERs penetration. In this control scheme, DERs are required to curtail their real power output in response to voltage rise. In this paper, an MINLP model is developed to determine the parameters of the controller with the objective to maximize the power injected by the DERs, while maintaining the voltage within limits. Also, the model takes fairness among DERs into consideration.
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优化电压-瓦特控制参数以使功率注入最大化
在过去的二十年中,分布式能源(DERs)在电力系统中的部署数量显著增加。尽管分布式电网提供的总能量仍小于年负荷总需求,但其瞬时输出功率在某些时候会超过系统的需求。这将导致电压幅度上升,并可能导致违反系统的电压限制。为了解决这个问题,对于具有高DERs穿透的系统,需要伏特瓦特控制能力。在这种控制方案中,要求der在电压上升时限制其实际输出功率。本文建立了一个MINLP模型,以确定控制器的参数,目标是使der注入的功率最大化,同时保持电压在限制范围内。此外,该模型还考虑了der之间的公平性。
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