Primary frequency response with aggregated DERs

Swaroop S. Guggilam, Changhong Zhao, E. Dall’Anese, Y. Chen, S. Dhople
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引用次数: 14

Abstract

Power networks have to withstand a variety of disturbances that affect system frequency, and the problem is compounded with the increasing integration of intermittent renewable generation. Following a large-signal generation or load disturbance, system frequency is arrested leveraging primary frequency control provided by governor action in synchronous generators. In this work, we propose a framework for distributed energy resources (DERs) deployed in distribution networks to provide (supplemental) primary frequency response. Particularly, we demonstrate how power-frequency droop slopes for individual DERs can be designed so that the distribution feeder presents a guaranteed frequency-regulation characteristic at the feeder head. Furthermore, the droop slopes are engineered such that injections of individual DERs conform to a well-defined fairness objective that does not penalize them for their location on the distribution feeder. Time-domain simulations for an illustrative network composed of a combined transmission network and distribution network with frequency-responsive DERs are provided to validate the approach.
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聚合DERs的主频率响应
电网必须承受各种影响系统频率的干扰,而随着间歇性可再生能源发电的日益整合,这个问题变得更加复杂。在大信号产生或负载扰动之后,利用同步发电机中的调速器提供的一次频率控制来控制系统频率。在这项工作中,我们提出了一个部署在配电网中的分布式能源(DERs)框架,以提供(补充)主频率响应。特别是,我们演示了如何设计单个der的工频下降斜率,以便配电馈线在馈线头部呈现有保证的频率调节特性。此外,倾斜的设计使得单个der的注入符合一个定义良好的公平目标,而不会因为它们在分配馈线上的位置而受到惩罚。为验证该方法的有效性,给出了一个具有频率响应性DERs的输配网联合网络的时域仿真。
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