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Influence of HVDC control on HVDC reactive power overshoot after large disturbance

机译:大扰动后HVDC控制对HVDC无功功率超调的影响

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摘要

This paper presents a study of HVDC reactive power overshoot which presents unfavorable reactive load disturbance to AC power system and may result in transient voltage instability. The key idea of this paper is HVDC control has a strong effect on HVDC reactive power recovery characteristic. Based on an actual HVDC project and the PSCAD/EMTDC simulation platform, this paper systematically studies the influence mechanism and pathway of HVDC control on HVDC reactive power overshoot after the AC bus in inverter station is subjected to faults, and also refines related influence rules of control parameters. By keeping firing angle unchanged, the inherent HVDC reactive power recovery characteristic is analyzed, and the key control links that affect reactive power overshoot are excavated sequentially, containing constant extinction angle control (CEA), voltage dependent current order limiter (VDCOL) and transient current control function. According to the simulation results, the influence rules of parameters of the above-mentioned key control links on the overshoot magnitude are summarized, which contributes to HVDC control strategy optimization of enhancing the transient voltage stability.
机译:本文介绍了HVDC无功功率过冲的研究,它对交流电源系统造成不利的无功负载干扰,并可能导致瞬态电压不稳定。本文的关键思想是HVDC控制对HVDC无功功率恢复特性有很大影响。本文基于实际的直流输电工程和PSCAD / EMTDC仿真平台,系统研究了逆变站交流母线发生故障后直流输电控制对直流无功功率超调的影响机理和途径,并完善了相关的影响规律。控制参数。通过保持点火角不变,分析了固有的HVDC无功功率恢复特性,并依次挖掘了影响无功功率超调的关键控制环节,其中包括恒定消光角控制(CEA),电压相关电流阶跃限制器(VDCOL)和瞬态电流控制功能。根据仿真结果,总结了上述关键控制环节的参数对过冲量的影响规律,有助于优化提高暂态电压稳定性的HVDC控制策略。

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