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Secondary Frequency Control With On–Off Load Side Participation in Power Networks

机译:具有开关负载侧参与电网的二次频率控制

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We study the problem of decentralized secondary frequency regulation in power networks where ancillary services are provided via on-off load-side participation. We initially consider on-off loads that switch when prescribed frequency thresholds are exceeded, together with a large class of passive continuous dynamics for generation and demand. The considered on-off loads are able to assist existing secondary frequency control mechanisms and return to their nominal operation when the power system is restored to its normal operation, a highly desirable feature that minimizes users' disruption. We show that system stability is not compromised despite the switching nature of the loads. However, such control policies are prone to chattering, which limits the practicality of these schemes. As a remedy to this problem, we propose a hysteretic on-off policy where loads switch on and off at different frequency thresholds and show that stability guarantees are retained when the same decentralized passivity conditions for continuous generation and demand hold. Several relevant examples are discussed to demonstrate the applicability of the proposed results. Furthermore, we verify our analytic results by using numerical investigations on the Northeast Power Coordinating Council (NPCC) 140-bus system.
机译:我们研究了电力网络中分散的二级频率调节问题,通过开关负载侧参与提供了辅助服务。我们最初考虑在超过规定频率阈值时切换的开关负载,以及大类的一类用于生成和需求的被动连续动态。考虑的开关负载能够帮助现有的二次频率控制机制,并在电力系统恢复到正常操作时返回其标称操作,这是一个非常希望的用户的中断最小化的特征。我们表明,尽管负载的性质,但系统稳定性不会受到损害。然而,这种控制政策易于喋喋不休,这限制了这些方案的实用性。作为解决此问题的补救措施,我们提出了一个滞后开关政策,其中在不同频率阈值下加载开关并显示稳定性保证在连续生成和需求保持相同的分散的无线条件时保留。讨论了几个相关的例子以证明所提出的结果的适用性。此外,我们通过在东北电力协调委员会(NPCC)140公交系统上使用数值调查来验证我们的分析结果。

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