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Distributed synthetic inertia control in power systems

机译:电力系统中的分布式合成惯性控制

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摘要

Due to the increasing use of renewables into the grid connected through power converters, the rotational inertia in power systems has been reducing. Consequently the frequency response requires the activation of the so-called synthetic inertia control. The synthetic inertia control aims to inject an extra power component when the system experiences a frequency disturbance event. In this paper, it is proposed that a distributed dynamic controllers for sharing the synthetic inertia control actions between the various active power converters in the grid for the improvement of the frequency response. It is assumed that a communication structure between the synthetic inertia controllers and the local power converters is involved in the system. The convergence of the control system is reached through a game population theory and the primary frequency control has been improved. The results are validated based on simulation of a two-area test system.
机译:由于越来越多的可再生能源使用到通过功率转换器连接的电网中,因此电力系统的转动惯量一直在减少。因此,频率响应需要激活所谓的合成惯性控制。合成惯性控制旨在在系统遇到频率干扰事件时注入额外的功率分量。在本文中,提出了一种分布式动态控制器,用于在电网中的各个有功功率转换器之间共享合成惯性控制动作,以改善频率响应。假设系统中包含了合成惯性控制器和本地功率转换器之间的通信结构。通过博弈理论达到控制系统的收敛性,改善了一次频率控制。结果基于两区域测试系统的仿真进行了验证。

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