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The role of load models and reactive power support during large frequency transients

机译:负载模型和无功功率支持在大频率瞬变中的作用

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The goal of this work is to study the different dynamic behavior of the Italian electric power system, when subject to large disturbances, in relation to adopted load model and reactive power compensation devices considered for the network. Effectiveness of Defence Plans has already been proved by system Operators, but little attention is paid sometimes to the influence of used models. The adoption of a realistic load model implies a better representation of the system: in particular, the conclusions are that if the load is modeled as dynamic and voltage and frequency dependent, frequency perturbations resulting from the simulated contingencies are less dangerous as compared to more simplified models. Furthermore, the possibility to support voltages at particular buses damps voltage transient consequent to large perturbations and avoids further disconnection of loads, keeping the same security level. The conclusions are supported by tests carried out both on a relatively small portion of the Italian system (Sicily) and on a larger area (central and southern part).
机译:这项工作的目的是研究意大利电力系统在受到较大干扰时的不同动态行为,与所采用的负载模型和网络中考虑的无功补偿装置有关。系统操作员已经证明了防御计划的有效性,但是有时很少注意所使用模型的影响。采用实际的负载模型意味着可以更好地表示系统:特别是,得出的结论是,如果将负载建模为动态的并且与电压和频率相关,则与更为简化的情况相比,由仿真意外事件引起的频率扰动的危险性较小。楷模。此外,在特定总线上支持电压的可能性可抑制由于大扰动而引起的电压瞬变,并避免负载的进一步断开,从而保持相同的安全级别。在意大利系统的较小部分(西西里岛)和较大区域(中部和南部)进行的测试都支持了这些结论。

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