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Active control and simulation test study on torsional vibration of large turbo-generator rotor shaft

机译:大型汽轮发电机转子轴扭转振动的主动控制与仿真试验研究

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摘要

Reduction of shaft vibration is very important for safe and efficient functioning of a large turbo-generator. This paper presents a theoretical study and proposes an active vibration control scheme for controlling torsional vibration of a rotor shaft due to electromagnetic disturbances or unsteady flow in large steam turbine generator sets. A form of the conventional linear quadratic regulator (LQR) control algorithm has been proposed in this paper. The optimal LQR control problem is solved for each time interval with the weighting matrices, through the Ricatti equation, leading to time-varying gain matrices. The test is conducted using modified direct current electromotor as torsional vibration exciter and actuator, mounting on the rotor shaft. The actuator applies suitable force to control torsional vibration. Suitable force of actuation is achieved by varying the control current in the actuator depending upon a proportional and derivative control law. Preliminary theoretical study and test simulation show good reduction in torsional vibration response.
机译:轴振动的减小对于大型涡轮发电机的安全有效运行非常重要。本文提出了一项理论研究,并提出了一种主动振动控制方案,用于控制大型蒸汽轮发电机组中由于电磁干扰或不稳定流动而引起的转子轴扭转振动。本文提出了一种传统的线性二次调节器(LQR)控制算法。通过Ricatti方程,通过加权矩阵为每个时间间隔解决了最优LQR控制问题,从而导致了时变增益矩阵。该测试使用安装在转子轴上的改进型直流电动机作为扭振激励器和执行器进行。执行器施加适当的力来控制扭转振动。通过根据比例和微分控制定律改变执行器中的控制电流,可以获得合适的执行力。初步的理论研究和测试模拟表明,扭转振动响应得到了很好的降低。

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