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Application of simultaneous active and reactive power modulation of superconducting magnetic energy storage unit to damp turbine-generator subsynchronous oscillations

机译:超导储能单元同时有功和无功功率调制在阻尼汽轮发电机次同步振动中的应用

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摘要

An active and reactive power (P-Q) simultaneous control scheme, which is based on a superconducting magnetic energy storage (SMES) unit, is designed to damp out the subsynchronous resonant (SSR) oscillations of a turbine-generator unit. In order to suppress unstable torsional mode oscillations, a proportional-integral-derivative (PID) controller is used to modulate the active and reactive power input/output of the SMES unit according to speed deviation of the generator shaft. The gains of the proposed PID controller are determined by pole assignment approach based on modal control theory. Eigenvalue analysis of the studied system shows that the PID controller is quite effective over a wide range of operating conditions. Dynamic simulations using the nonlinear system model are also performed to demonstrate the damping effect of the proposed control scheme under disturbance conditions.
机译:基于超导磁能存储(SMES)单元的有功和无功功率(P-Q)同步控制方案旨在抑制涡轮发电机组的次同步谐振(SSR)振荡。为了抑制不稳定的扭转模式振荡,比例积分微分(PID)控制器用于根据发电机轴的速度偏差来调制SMES单元的有功和无功功率输入/输出。基于模态控制理论,通过极点分配方法确定所提出的PID控制器的增益。对所研究系统的特征值分析表明,PID控制器在很宽的运行条件下都非常有效。还使用非线性系统模型进行了动态仿真,以证明所提出的控制方案在扰动条件下的阻尼效果。

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