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An approach to PSS design for transient stability improvement through supplementary damping of the common low-frequency

机译:PSS设计的一种方法,通过对常见低频的附加阻尼来改善瞬态稳定性

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The authors propose an uncommon structure for the power system stabilizer (PSS) transfer function to improve the damping of the system low-frequency (in the range of 0.02-0.08 Hz), as well as the usual local and inter-area frequencies (in the range of 0.2-2.5 Hz). These somewhat conflicting goals are achieved by adding the speed-based stabilizing signals of two compensation filters, which independently provide the phase of adjustment necessary for adequate damping torques at two widely separated center frequencies (i.e., 0.05 and 1 Hz). Modeling of the open-loop system via the Prony analysis of the multimachine pulse response, followed by a root-locus study, made it possible to determine analytically the supplementary damping provided by the new PSS in the two frequency ranges of interest. Simulations of large disturbances on a realistic Hydro-Quebec transmission network with more than 59 machines modeled in detail confirmed that on a fast responding hydro-plant with significant installed capacity, the new PSS can add considerable damping to the 3c/min system oscillation, without any direct supplementary control of the governor.
机译:作者提出了一种不常见的电力系统稳定器(PSS)传递函数结构,以改善系统低频(0.02-0.08 Hz范围)以及通常的局部和区域间频率(in范围为0.2-2.5 Hz)。通过添加两个补偿滤波器的基于速度的稳定信号来实现这些有点矛盾的目标,该信号在两个相距很远的中心频率(即0.05和1 Hz)上独立地提供了足够的阻尼扭矩所需的调节相位。通过对多机脉冲响应进行Prony分析,然后进行根轨迹研究,对开环系统进行建模,从而有可能通过分析确定新PSS在感兴趣的两个频率范围内提供的补充阻尼。在实际的魁北克魁北克输水网络上模拟了59台以上的机器,对大型扰动进行了仿真,结果表明,在具有显着装机容量的快速响应水电厂上,新型PSS可以显着降低3c / min系统的振动,而无需州长的任何直接补充控制。

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