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Downstream network modeling for switching transients in EHV networks containing cables

机译:下游网络建模,用于在包含电缆的超高压网络中切换瞬变

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For the study of switching transients in Extra High Voltage (EHV) networks it is common practice to model a relatively small part of the EHV network. The downstream network is either disregarded or modeled as a parallel RC or RL circuit, based on the powerflow, directly at the secondary side of the transmission transformer. In this paper an investigation for the extent and model type of the downstream network (below 380 kV) is performed. A detailed model for an example downstream network is developed. Different simplifications and equivalent models are compared in frequency domain and in time domain, during cable energization. The impact of the lower voltage network on both the maximum overvoltage and the harmonic content during energization is assessed. Moreover, components that are of major importance are identified and proper equivalent models for the downstream network are proposed. Simulation results show that in particular the type of the 150 kV network (underground cable or overhead line) affects greatly both the maximum overvoltage and the harmonic content during energization. On the other hand, the parameters of end customer loads have only minor effect.
机译:为了研究超高压(EHV)网络中的开关瞬变,通常对EHV网络的一小部分进行建模。基于功率流,直接在传输变压器的次级侧忽略下游网络或将其建模为并行RC或RL电路。本文对下游网络(380 kV以下)的范围和模型类型进行了研究。开发了示例下游网络的详细模型。在电缆通电期间,在频域和时域中比较了不同的简化形式和等效模型。评估了低压网络对通电过程中最大过电压和谐波含量的影响。此外,确定了最重要的组件,并为下游网络提出了适当的等效模型。仿真结果表明,特别是150 kV网络的类型(地下电缆或架空线)对通电过程中的最大过电压和谐波含量都有很大影响。另一方面,最终客户负载的参数影响很小。

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