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Emergency control automatic computation method of angle stability based on electro-mechanic transient simulation

机译:基于机电暂态仿真的角度稳定度应急控制自动计算方法

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In order to maintain the power system stability for more serious disturbance, some stability control devices have been installed, and the stability control system is developed. Angle stability problem is one important stability problem of power system and the control strategy is computed ahead of time by offline simulation. The power flow of data used in the offline simulation usually is very serious so that the control strategy can be used for all the operation mode of actual power system. It is not economic and may be out of function for some special operation mode. It may be better to compute the control strategy based on the actual power system data online. The paper presents the emergency control automatic computation method of angle stability. The power system angle stability usually is oscillation between several different generator groups. The oscillation center is important and can be computed during transient stability simulation. Then, power system is divided into several areas based on the oscillation center, and then the adjustable area and device are found and sorted. Finally the adjustable method is determined by simulation. The North China power system is used as one example to introduce the whole process of the method and testify the validity.
机译:为了在更严重的干扰下维持电力系统的稳定性,已经安装了一些稳定性控制装置,并开发了稳定性控制系统。角稳定性问题是电力系统的重要稳定性问题,其控制策略是通过离线仿真提前计算得到的。离线仿真中使用的数据功率流通常非常严重,因此控制策略可用于实际电源系统的所有运行模式。这不经济,并且对于某些特殊的操作模式可能无法正常工作。基于在线的实际电力系统数据来计算控制策略可能会更好。提出了一种角度稳定度应急控制自动计算方法。电力系统角度稳定性通常是几个不同发电机组之间的振荡。振荡中心很重要,可以在暂态稳定性仿真过程中进行计算。然后,根据振荡中心将电力系统划分为几个区域,然后对可调区域和装置进行分类。最后,通过仿真确定了可调方法。以华北电网为例,介绍了该方法的全过程并验证了其有效性。

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