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Simulation Analysis of Split Connection Mode System Control for XiMeng to TaiZhou UHVDC Project

机译:西孟至台特高压直流工程分裂接线模式系统控制的仿真分析。

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XiMeng to TaiZhou (abbr. XT) ±800kV UHVDC (Ultra High Voltage Direct Current) transmission project, with rated power 10000MW, is the first HVDC project high voltage and low voltage converter spilt connection to 500kV and 1000kV power grid. In view of the rectifier and inverter side AC system weak characteristics of in the primary operation stage, the converter station bus voltage control strategy puts forward before and after the HVDC system deblock by system simulating calculation analysis in the primary operation conditions. For split connection mode control function, it is analyzed that is the basic control performance of high and low voltage converter split connection to 500kV/1000kV AC power grid, the simulation calculation model is established. The performance of the deblock, power/current step response, AC/DC line ground fault and monopole start/stop in reversed power direction has been carried out simulating research. The XT UHVDC system and equipment performance and the secondary control protection function got verified, the improved control strategy of commutation failure in inverter side was put forward. Through the simulation analysis and test, it is suggested that reversed power direction mode temporarily not arrange because the XiMeng side system is very weak and AC/DC voltage and current fluctuate greatly. Those research results are used in the process of XT project system test, in order to provide technical support for system stability operational stage in primary operation stage.
机译:西孟至台州(简称XT)的额定功率为10000MW的±800kV UHVDC(超高压直流)输电项目,是第一个HVDC工程高压和低压变流器溢流连接到500kV和1000kV电网。鉴于整流器和逆变器侧交流系统在主运行阶段的弱特性,通过系统仿真计算分析在主运行条件下,提出了换流站母线电压控制策略。针对分接模式控制功能,分析了高低压变频器分接至500kV / 1000kV交流电网的基本控制性能,建立了仿真计算模型。通过仿真研究进行了去块,功率/电流阶跃响应,AC / DC线路接地故障以及单极启动/停止在反向功率方向上的性能。验证了XT特高压直流输电系统和设备性能以及二次控制保护功能,提出了改进的逆变器侧换相故障控制策略。通过仿真分析和测试,表明由于西孟侧系统非常薄弱,交直流电压和电流波动较大,因此暂时不设置反向功率方向模式。这些研究成果被用于XT项目系统测试过程中,以便为初级运营阶段的系统稳定性运营阶段提供技术支持。

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