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Investigation of inertia's locational impacts on primary frequency response using large-scale synthetic network models

机译:使用大规模合成网络模型研究惯性的位置对一次频率响应的影响

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As more renewable energy resources connected by power electronics and gas-fueled generators are integrated into power grids, total system inertia has been significantly decreasing in recent years. The resulting decline in system primary frequency response threatens the reliability and stability of power grids. This paper aims to study the locational dependence of the impacts of inertia on system primary frequency response. Both transient stability simulations and modal analysis are applied to study the locational effects. Sensitivity analysis is also carried out to provide insights into the extent to which inertia's location impacts the system dynamic behavior. We first use a small-scale test system to illustrate inertia's locational impacts. In order to obtain realistic simulation results, we then perform studies on a large-scale synthetic network dynamic model.
机译:随着越来越多的通过电力电子设备和燃气发电机连接的可再生能源被整合到电网中,近年来总的系统惯性已大大降低。系统初级频率响应的下降会威胁到电网的可靠性和稳定性。本文旨在研究惯性影响对系统一次频率响应的位置依赖性。瞬态稳定性仿真和模态分析均用于研究位置效应。还进行了灵敏度分析,以提供有关惯性位置影响系统动态行为的程度的见解。我们首先使用小型测试系统来说明惯性对位置的影响。为了获得逼真的仿真结果,我们然后对大型合成网络动态模型进行研究。

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