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Excitation Control Based Energy-Shaping with Direct Mechanical Damping Injection for Transient Stability Improvement of Power Systems

机译:基于励磁控制的直接机械阻尼注入能量整形,以改善电力系统的暂态稳定性

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In this paper, a novel energy-shaping design method is provided for excitation controller of power systems, which is carried out by directly injecting the compensation damping into the mechanical damping. This design method utilizes the transient energy function with the physical properties of power system, and the adjusted parameters of the designed controller have directly corresponding relation to the physical meaning of the mechanical damping and electrical damping of power system. In addition, to further enhance the transient stability, considering the possible variation in the transmission line and uncertainties in physical parameters, an adaptive excitation controller is also designed by employing the direct mechanical damping injection. It is shown that the proposed excitation controller can make the system have better dynamic properties and large stability margin even in the case with the permanent fault on transmission line and the turbine failure. And, for illustrating the effectiveness of the proposed controller, the simulation comparison results with the traditional energy-shaping approach are presented
机译:本文为电力系统的励磁控制器提供了一种新的能量整形设计方法,该方法是通过将补偿阻尼直接注入机械阻尼中来实现的。该设计方法利用了具有电力系统物理特性的暂态能量函数,所设计的控制器的调整参数与电力系统机械阻尼和电阻尼的物理含义具有直接对应关系。另外,为了进一步提高瞬态稳定性,考虑到传输线的可能变化和物理参数的不确定性,还通过采用直接机械阻尼注入来设计自适应励磁控制器。结果表明,所提出的励磁控制器即使在输电线路存在永久性故障和水轮机故障的情况下,也能使系统具有较好的动态性能和较大的稳定性裕度。并且,为了说明所提出控制器的有效性,给出了与传统能量整形方法的仿真比较结果

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