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Eliminating Subsynchronous Oscillations With an Induction Machine Damping Unit (IMDU)

机译:利用感应电机阻尼单元(IMDU)消除次同步振荡

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摘要

The IEEE First and Second Benchmark Models for subsynchronous resonance (SSR) are used to analyze the damping properties of an induction machine damping unit (IMDU) coupled to the shaft of a turbo-generator set. This paper investigates the rating and location of the induction machine that, without the aid of any controllers, effectively damps subsynchronous resonance for all line series compensation levels. Eigenvalue analyses are performed on linearized models of the shaft system including the induction machine to find the optimum location. The best location of the IMDU, providing maximum damping, is next to the HP turbine at the end of the shaft. Time domain simulations are conducted to find the adequate rating of the induction machine. It is observed that a small size, high power (about 10% of the generator rating), low energy machine effectively damps SSR. The IMDU reduces peak torques in shaft sections during transients. In the paper, it is demonstrated that the addition of an IMDU at the end of the shaft would have prevented the SSR events of the Mohave Desert shafts.
机译:用于次同步共振(SSR)的IEEE第一和第二基准模型用于分析耦合到涡轮发电机组轴上的感应电机阻尼单元(IMDU)的阻尼特性。本文研究了感应电机的额定值和位置,该感应电机无需任何控制器就可有效衰减所有线路串联补偿水平的次同步谐振。对包括感应电机在内的轴系统的线性化模型进行特征值分析,以找到最佳位置。 IMDU的最佳位置(可提供最大的阻尼)位于轴端的HP涡轮机旁边。进行时域仿真以找到感应电机的适当额定值。可以看到,小尺寸,高功率(约为发电机额定功率的10%),低能耗的机器有效地抑制了SSR。 IMDU可以减小瞬态过程中轴段的峰值扭矩。本文证明,在竖井末端增加IMDU可以防止莫哈维沙漠竖井的SSR事件。

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