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Study on Coordinated Control Strategy of Reactive Power Compensation Device in DC Converter Station with New-generation Synchronous Condensers

机译:新一代同步凝汽器直流换流站无功补偿装置协调控制策略研究

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In order to meet the higher demand of dynamic reactive power support is put forward in the UHV DC power transmission project, the new-generation synchronous condensers are applied in the UHV DC/AC. However, the excitation system of the new-generation synchronous condensers and the reactive power compensation device of the DC converter station are controlled individually, and there is no reasonable coordination strategy. Therefore, the transient reactive power support capability of the synchronous condenser is analyzed in this paper considering with excitation control characteristics. Then, the transient reactive power demand of the HVDC transmission system is also analyzed. Based on this, the coordinated control strategy of the reactive power compensation device in DC converter station with synchronous condensers are proposed, and a coordinated control system is given in this paper. Finally, the simulation model of the new-generation synchronous condensers access to UHV DC power grids are built based on the PSCAD software. The digital simulation results validate the proposed coordinated control strategy.
机译:为了满足特高压直流输电工程中对动态无功功率支持的更高要求,新一代同步电容器被应用于特高压直流/交流中。但是,新一代同步电容器的励磁系统和直流换流站的无功补偿装置是单独控制的,没有合理的协调策略。因此,本文考虑励磁控制特性,分析了同步电容器的暂态无功功率支持能力。然后,还分析了高压直流输电系统的暂态无功功率需求。在此基础上,提出了带有同步电容器的直流换流站无功补偿装置的协调控制策略,并给出了一种协调控制系统。最后,基于PSCAD软件建立了新一代同步电容器接入特高压直流电网的仿真模型。数字仿真结果验证了所提出的协调控制策略。

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