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Synchronizing and damping torque coefficients and power system steady-state stability as affected by static VAr compensators

机译:受静态VAr补偿器影响的同步和阻尼扭矩系数以及电力系统稳态稳定性

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摘要

The utilization of static VAr compensators (SVC) for supplying reactive power at certain points of an electric power system is an efficient way for fast control of transient and steady-state voltage changes following short-circuits, load rejection, opening of severely loaded transmission circuits, etc. Other SVC applications include the increase of power transmission capacity through interconnections between areas of a power system and the damping enhancement of local or inter-area electromechanical oscillation modes. This paper fundamentally deals with these last two issues by analyzing the results of synchronizing and damping torque coefficient calculations for a generation station connected radially to a much larger power system. The results presented pertain to a double-circuit, 800 km, 500 kV transmission system during a one-circuit out contingency.
机译:利用静态VAr补偿器(SVC)在电力系统的某些位置提供无功功率是快速控制短路,负载抑制,重载传输电路断开后的瞬态和稳态电压变化的有效方法SVC的其他应用包括通过电力系统区域之间的互连以及局部或区域间机电振荡模式的阻尼增强来增加输电能力。本文通过分析径向连接到大型电力系统的发电站的同步和阻尼扭矩系数计算结果,从根本上解决了后两个问题。给出的结果与在单回路意外情况下的双回路800 km 500 kV输电系统有关。

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