论文标题

通过调节活动功率的调制,一种新型的广阔区域控制策略,用于阻尼临界频率振荡

A Novel Wide-Area Control Strategy for Damping of Critical Frequency Oscillations via Modulation of Active Power Injections

论文作者

Xie, Ruichao, Kamwa, Innocent, Chung, C. Y.

论文摘要

本文提出了一种新型的广域控制策略,用于调节主动电源注射以湿润电源系统中的临界频率振荡,其中包括区域间振荡和瞬态频率摆动。提出的方法可有效利用现有分布式能源资源(DER)的有限动力储存,以减轻这些振荡。这是通过使用相关模式的振荡信号作为电源命令在不同站点上在不同站点上解耦来实现的。提供了这种解耦调节控制的理论基础。从技术上讲,所需的唯一模态振荡信号是通过线性结合系统范围频率过滤滤出的,该频率由线性二次调节器基于线性二次调节器(LQRSP)技术确定。通过提出的策略,考虑支持设备的响应限制和稳态输出能力,可以有效地设计每个主动功率注入的调制。该方法基于两个面积测试系统进行验证,并根据新英格兰39-BUS测试系统进一步证明。

This paper proposes a novel wide-area control strategy for modulating the active power injections to damp the critical frequency oscillations in power systems, this includes the inter-area oscillations and the transient frequency swing. The proposed method pursues an efficient utilization of the limited power reserve of existing distributed energy resources (DERs) to mitigate these oscillations. This is accomplished by decoupling the damping control actions at different sites using the oscillation signals of the concerned mode as the power commands. A theoretical basis for this decoupled modulating control is provided. Technically, the desired sole modal oscillation signals are filtered out by linearly combining the system-wide frequencies, which is determined by the linear quadratic regulator based sparsity-promoting (LQRSP) technique. With the proposed strategy, the modulation of each active power injection can be effectively engineered considering the response limit and steady-state output capability of the supporting device. The method is validated based on a two-area test system and is further demonstrated based on the New England 39-bus test system.

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