基于三相逆变器控制的通用潮流补偿器对输电网暂态稳定优化的贡献

Koko Koko Joseph, N. N. Léandre, N. Salomé
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引用次数: 1

摘要

在高振幅扰动的情况下,尽可能接近其极限的电网使用可能导致其不稳定。系统振荡的阻尼可以通过传统的电压和速度调节手段来实现,也可以通过FACTS(柔性交流传输系统)设备来实现,这些设备越来越多地用于电网。本文利用混合潮流控制器与三电平逆变器之间的最优控制协调来提高输电线路的暂态稳定性。UPFC是串行补偿器(SSSC)和并联补偿器(STATCOM)的组合,两者都连接到DC- link直流总线。SSSC作为网络的电压源,并注入除网络电压外可在相位和幅度上调节的电压;STATCOM作为电流源。所采用的方法在单机网络的Matlab Simulink环境下进行了测试。最优控制器调优将输运角振荡从248.17%降低到9.85%,使系统暂态稳定性得到了较好的改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Contribution to the Optimization of the Transient Stability of an Electric Power Transmission Network Using a Universal Power Flow Compensator Controlled by a Three-Stage Inverter
The use of an electrical network as close as possible to its limits can lead to its instability in the event of a high amplitude disturbance. The damping of system oscillations can be achieved by conventional means of voltage and speed regulation but also by FACTS (Flexible AC Transmission Systems) devices, which are increasingly used in power networks. In this work, optimal control coordination between a hybrid power flow controller and a three-level inverter was used to improve the transient stability of a transmission line. The UPFC is a combination of a serial compensator (SSSC) and a parallel compensator (STATCOM) both connected to a DC-LINK DC bus. The SSSC acts as a voltage source for the network and injects a voltage that can be adjusted in phase and amplitude in addition to the network voltage; the STATCOM acts as a current source. The approach used is tested in the Matlab Simulink environment on a single machine network. Optimal controller tuning gives a better transient stability improvement by reducing the transport angle oscillations from 248.17% to 9.85%.
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