Application of the optimal damper on damping turbine-generator torque vibrations in a HVDC link

J. Tsai, R. Wu
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引用次数: 1

Abstract

Due to more various power disturbances occurring in a power system involving a HVDC link, the turbine generator shafts and/or blades are more prone to damage than in general HVAC systems. In this paper, a new mechanical damper scheme based on participation factor approach is proposed to damp torsional torque and prolong the life of turbine mechanism. Two types of torsional damping couplings, inertia damping coupling and elastic damping coupling, are adopted and examined. The optimal type and the optimal location of the damping coupling will be identified and installed to the turbine generator shaft section. The simulation results demonstrate that the best damper may not be installed at the location with the most onerous vibrations but provides satisfactory damping performance on shafts and blades following severe power disturbances in a HVDC link
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最优阻尼器在抑制高压直流线路汽轮发电机转矩振动中的应用
由于涉及HVDC链路的电力系统中出现更多各种功率干扰,涡轮发电机轴和/或叶片比一般HVAC系统更容易损坏。本文提出了一种基于参与因子法的机械减振器减振器减振器减振器减振器减振器方案,以减小涡轮机构的扭转扭矩,延长其寿命。采用了惯量阻尼联轴器和弹性阻尼联轴器两种扭转阻尼联轴器,并进行了试验。确定阻尼联轴器的最佳型式和最佳位置,并将其安装在汽轮发电机轴段上。仿真结果表明,最好的阻尼器可能不是安装在振动最严重的位置,而是在高压直流输电线路中严重电力干扰后的轴和叶片上提供满意的阻尼性能
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