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Frequency Response as Tuning of Power System Stabilizer on Rotor Speed Dynamic Stability

机译:频率响应作为电力系统稳定器调整转子速度动态稳定性

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Power system stability is the ability of an electric power system unit, for giving operating conditions beginning to recover operating state of equilibrium after being subjected to a physical interference. Power system stability has been recognized as an important problem for safe operation of system unit. Stability of power system is similar to the stability of any dynamic system, and has basic mathematical. Concepts from the mathematics and theoretical stability control are first revised to provide background information related to stability of dynamic system generally and establish a connection theoretical. This paper presents to improve of dynamic power system stability using frequency response as tuning of system stabilizer. It is started by electrical power systems mathematic modeling in state variable equation then set the expertise function of frequency response as tuning of system stabilizer. The plant controlled by function of frequency response is tuned to left half plane (LHP) as system stabilizer which their input from the rotor speed. When the system occur fault, the rotor speed should be synchronized, for this case one electrical controller is needed to make sure the system is stable.
机译:电力系统稳定性是电力系统单元的能力,用于在经受物理干扰后开始恢复平衡状态的操作条件。电力系统稳定性已被认为是系统单元安全操作的重要问题。电力系统的稳定性类似于任何动态系统的稳定性,并且具有基本的数学。首先修改了数学和理论稳定性控制的概念,以提供与动态系统稳定性相关的背景信息,并建立连接理论。本文采用频率响应作为系统稳定器调整的动态电力系统稳定性。它由电力系统在状态变量方程中的数学建模开始,然后将频率响应的专长函数设置为系统稳定器的调整。通过频率响应的功能控制的工厂被调谐到左半平面(LHP)作为其从转子速度的输入的系统稳定器。当系统发生故障时,应同步转子速度,对于这种情况,需要一个电气控制器来确保系统稳定。

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