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A Practical Approach to HVDC System Control for Damping Subsynchronous Oscillation Using the Novel Eigenvalue Analysis Program

机译:一种新颖的特征值分析程序,用于抑制次同步振荡的HVDC系统控制的实用方法

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摘要

This paper presents a practical approach for supplementary control of high voltage direct current (HVDC) system to damp subsynchronous oscillation (SSO) involving HVDC converters and turbine-generator shaft systems. A novel eigenvalue analysis (NEA) program, HVDC system modeling to consider steady-state and dynamic conditions in a combined ac/dc system, and an appropriate control scheme have been utilized. The design method proposed facilitates the design of a subsynchronous oscillation damping controller (SODC) to provide positive damping torque for the dominant torsional mode in combined ac/dc systems. The suggested SODC design method has been applied to an ac/dc system to verify its practicality using the EMTDC simulation program.
机译:本文提出了一种实用的方法,用于辅助控制高压直流(HVDC)系统,以抑制涉及HVDC换流器和涡轮发电机轴系统的亚同步振荡(SSO)。一种新颖的特征值分析(NEA)程序,在组合式AC / DC系统中考虑稳态和动态条件的HVDC系统建模以及适当的控制方案已得到利用。所提出的设计方法有助于次同步振荡阻尼控制器(SODC)的设计,从而为组合式AC / DC系统中的主扭转模式提供正阻尼转矩。所建议的SODC设计方法已应用于交流/直流系统,以使用EMTDC仿真程序验证其实用性。

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