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Study on frequency oscillation controlling strategies for islanded operation mode of HVDC transmission systems

机译:高压直流输电系统孤岛运行模式的频率振荡控制策略研究

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Islanded operation mode of HVDC sending terminal is the condition that generators are only connected to DC system, disconnected with main AC networks. When disturbed, an islanded system is more prone to be frequency instable than a connected system. In this paper, a type of frequency controller based on phase compensation principle is proposed. By changing the closed-loop dominated poles to expected values, the controller can make the system frequency return back to normal in a few seconds. The characteristics of islanded systems are introduced. A practical UHVDC project is introduced, based on which, a detailed module is set up in PSCAD/EMTDC. The proposed frequency controller is added to the module, and four typical faults are conducted to verify the effectiveness of the controller. A proportion-integral (PI) controller of optimal parameters is designed to make a comparison with the proposed controller. The reported results demonstrate that the proposed frequency controller is a better choice than PI controller in eliminating frequency oscillation, and it can improve the steady state stability of islanded systems.
机译:HVDC发送终端的孤岛运行模式是这样的条件,即发电机仅连接到DC系统,而与主AC网络断开连接。当受到干扰时,孤岛系统比连接的系统更容易发生频率不稳定。本文提出了一种基于相位补偿原理的频率控制器。通过将闭环控制极点更改为期望值,控制器可以使系统频率在几秒钟内恢复正常。介绍了孤岛系统的特点。介绍了一个实际的特高压直流工程,在此基础上,在PSCAD / EMTDC中设置了详细的模块。建议的频率控制器已添加到模块中,并进行了四个典型故障以验证控制器的有效性。设计了最优参数的比例积分(PI)控制器,以与提出的控制器进行比较。报道的结果表明,所提出的频率控制器在消除频率振荡方面比PI控制器更好,并且可以提高孤岛系统的稳态稳定性。

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