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Impact of location and composition of dynamic load on the severity of SSR in meshed power systems

机译:动载荷的位置和组成对网状电力系统SSR严重性的影响

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This paper evaluates the impact of dynamic loads (induction motors) on the damping of Subsynchronous Resonance (SSR) based on load location and aggregate load inertia for the IEEE 68 bus network simulated in DIgSILENT. The severity of SSR oscillations is shown to increase in the presence of Subsynchronous Resonance Load Interactions (SSRLI), whereby dynamic loads may contribute towards negative damping under certain network topologies. This change in severity is investigated for each load location by replacing the static (constant impedance) load model, traditionally used in SSR studies, with a 50% static and 50% dynamic load model. The paper shows that the torsional damping and thus the severity of SSR is sensitive to the location and aggregate inertia of the dynamic load. These results establish the sensitivity of torsional damping to dynamic load location, size and aggregate inertia. In the absence of accurate knowledge of load composition, 50% static and 50% dynamic load composition can be used as a recommendation for the modelling of load during EMT studies of SSR, to avoid conservative results and over/under design of protection or mitigation strategies.
机译:本文基于DIgSILENT中模拟的IEEE 68总线网络的负载位置和总负载惯量,评估了动态负载(感应电动机)对次同步谐振(SSR)阻尼的影响。在存在次同步谐振负载相互作用(SSRLI)的情况下,SSR振荡的严重性会增加,从而在某些网络拓扑下,动态负载可能会导致负阻尼。通过用50%静态和50%动态负载模型替换传统的SSR研究中使用的静态(恒定阻抗)负载模型,研究每个负载位置的严重性变化。本文表明,扭转阻尼以及由此引起的SSR严重程度对动载荷的位置和总惯性敏感。这些结果确定了扭转阻尼对动态载荷位置,大小和总惯量的敏感性。在缺乏准确的载荷组成知识的情况下,可以将50%静态和50%动态载荷组成作为SSR EMT研究期间载荷建模的建议,以避免保守的结果以及过高或过低的保护或缓解策略设计。

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