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Demand response as a method for damping electromechanical oscillations of the power system

机译:需求响应作为一种阻尼电力系统机电振荡的方法

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With the development of the smart meters, demand response (DR) is able to provide fast ancillary services, such as frequency control. Some recent studies demonstrated that DR can perform like thermal generators in the frequency control. However, little attention has been paid to DR's effect on the electromechanical oscillations of the power system. Fast-response DR can not only affect system frequency, but also influence the system damping to the electromechanical oscillations. This paper makes an effort to investigate the DR's damping effect on the electromechanical oscillations, and analyzes the relevant influencing factors for the damping provided by DR. Numerical results verify the effectiveness of DR in the damping control, and show effects of varying the influencing factors such as the maximum available DR resource, the position of the load where DR is implemented, and the response-delay of DR.
机译:随着智能电表的发展,需求响应(DR)能够提供快速的辅助服务,例如频率控制。最近的一些研究表明,DR在频率控制方面可以像热发生器一样发挥作用。但是,很少有人关注DR对电力系统机电振荡的影响。快速响应的DR不仅会影响系统频率,而且还会影响系统对机电振荡的阻尼。本文致力于研究DR对机电振荡的阻尼作用,并分析DR提供的阻尼的相关影响因素。数值结果验证了DR在阻尼控制中的有效性,并显示了改变影响因素的影响,例如最大可用DR资源,实施DR的负载位置以及DR的响应延迟。

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