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Study on the SSO caused by HVDC link in hybrid AC-DC power systems

机译:交直流混合动力系统中高压直流输电引起的单点登录问题研究

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Subsynchronous oscillation (SSO) in hybrid AC-DC power systems caused by highly non-linear HVDC devices can lead to shaft failure and electrical instability of a turbo-generator at oscillation frequencies lower than the normal system frequency. With more and more HVDC transmission systems installed in electrical power systems, analysis and control of such SSO becomes a great concern of power engineers in power system design and operations. In this paper, a seven-node hybrid AC-DC system with different operating modes is to be investigated where EMTDC/PSCAD based digital simulation system with detailed multi-block generator model and a HVDC transmission link based on the IEEE first benchmark system model is built to investigate the SSO caused by the HVDC link in a hybrid AC-DC power system. The impact of the HVDC system on damping the SSO will be presented. Also, some operating proposals aiming at damping or even eliminating the SSO in the hybrid AC-DC power system are presented and verified using digital simulations.
机译:由高度非线性的HVDC设备引起的混合AC-DC电力系统中的次同步振荡(SSO)会导致涡轮发电机在低于正常系统频率的振荡频率下出现轴故障和电气不稳定性。随着越来越多的HVDC输电系统安装在电力系统中,对此类SSO的分析和控制已成为电力工程师在电力系统设计和操作中的高度关注。本文将研究具有不同工作模式的七节点混合AC-DC系统,其中基于EMTDC / PSCAD的数字仿真系统具有详细的多块生成器模型和基于IEEE第一基准系统模型的HVDC传输链路。用于研究混合AC-DC电源系统中由HVDC链路引起的SSO。将介绍高压直流输电系统对SSO阻尼的影响。此外,提出了一些旨在阻尼甚至消除混合AC-DC电力系统中的SSO的操作建议,并使用数字仿真对其进行了验证。

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