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REAL-TIME EMERGENCY CONTROL METHOD OF RELATIVE KINETIC ENERGY-BASED POWER SYSTEM TRANSIENT STABILITY

机译:基于动能的电力系统暂态实时性实时控制方法

摘要

A real-time emergency control method of relative kinetic energy-based power system transient stability. The system transient stability is monitored in real time by using a method of judging a change trend of rotation speed difference-power-angle difference, and is used as a startup condition of emergency control. When determining that a system will lose power-angle stability, the method calculates a remaining accelerating area based on a relative kinetic energy concept in a two-machine system, and uses an equal-area criterion to calculate and control a generator tripping value. In a control decision-making process, an impact of an action delay time is considered, making a calculation result more reliable. The method overcomes defects that a running method and a fault need to be predicted during offline calculation and that there is a lack of flexibility in handling a small-probability emergency accident, has strong adaptability and flexibility, and improves a safe and stable running level of the power system.
机译:基于相对动能的电力系统暂态稳定的实时应急控制方法。通过判断转速差-功率角差的变化趋势的方法实时监测系统的暂态稳定性,并将其作为应急控制的启动条件。当确定系统将失去功率角稳定性时,该方法基于两机系统中的相对动能概念来计算剩余加速区域,并使用等面积准则来计算和控制发电机跳闸值。在控制决策过程中,考虑了动作延迟时间的影响,使计算结果更加可靠。本发明克服了离线计算中需要预测运行方法和故障,处理小概率紧急事故时缺乏灵活性,适应性和灵活性强,提高安全稳定运行水平的缺陷。电力系统。

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