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Location and Migration Laws of Out-of-Step Center under Multi-Frequency Oscillation Based on Voltage Phase Angle Trajectory

机译:电压相位角轨迹的多频振荡下失步中心的位置和迁移规律

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With the rapid development of ultra-high voltage AC/DC hybrid power grid projects and the large-scale of renewable energy integration, it puts high demand for safety and stability control of the power system. Splitting control (or islanding control) is the last resort to preserve the power system from severe blackouts. In China, the out-of-step center (i.e. the physical point of an oscillating system where the voltage is near to zero) is applied to determining the splitting locations. However, the increasingly complicated power system might oscillate in multi-frequency after large disturbance, which thus leads to dynamic migration of out-of-step centers. To address this issue, this paper derives the migration function of the out-of-step center in three equivalent machines system, based on which the migration laws are analyzed. Accordingly, the voltage angle trajectories method is employed to determine the time and location of splitting control in advance, which could guarantee the real-time implementation of islanding control. Finally, IEEE 9-bus and IEEE 39-bus test systems in PSS/E verify the effectiveness of the proposed method.
机译:随着超高压交直流混合电网项目的快速发展以及可再生能源的大规模集成,对电力系统的安全稳定控制提出了很高的要求。分流控制(或孤岛控制)是保护电源系统免受严重停电的最后手段。在中国,失调中心(即振荡系统的物理点,电压接近零)用于确定分裂位置。然而,日益复杂的电力系统可能会在受到大干扰后以多频振荡,从而导致失调中心的动态迁移。为了解决这个问题,本文推导了失步中心在三台等效机器系统中的迁移功能,并在此基础上分析了迁移规律。因此,采用电压角轨迹法预先确定分裂控制的时间和位置,可以保证孤岛控制的实时实现。最后,PSS / E中的IEEE 9总线和IEEE 39总线测试系统验证了该方法的有效性。

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