首页> 外文期刊>IEEE Transactions on Power Systems >Coordinated Design of Supplementary Controllers in VSC-HVDC Multi-Terminal Systems to Damp Electromechanical Oscillations
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Coordinated Design of Supplementary Controllers in VSC-HVDC Multi-Terminal Systems to Damp Electromechanical Oscillations

机译:VSC-HVDC多端子系统补充控制器的协调设计,潮湿机电振动

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High Voltage Direct Current Transmission (HVDC) systems are called to play an important role in modern electric power systems. Among the many aspects of HVDC currently under active research, this paper presents a proposal to design supplementary controllers in multi-terminal HVDC systems based on Voltage Source Converters (VSC-MTDC, for short) to damp electromechanical oscillations (Power Oscillation Damping or POD). In the proposed POD controllers (PODC), each VSC station compares the average of the frequencies measured at the AC connection points of the VSC stations of the MTDC system (frequency set point) with its own AC output frequency. This difference is then used to manipulate the active- (P) and reactive-power (Q) injections of each one of the VSC stations. The proposed PODCs are designed systematically by using a coordinated-design method using the concept of eigenvalue sensitivity, in order to achieve the required damping ratio of a set of electromechanical modes of interest in the power system where the VSC-MTDC is connected. The proposed designed methodology has been tested in the Cigre Nordic32A system with an embedded VSC-MTDC system. Results show that the proposed PODCs are effective damping successfully the electromechanical modes of interest and they are robust against communication latencies.
机译:调用高压直流传输(HVDC)系统在现代电力系统中发挥重要作用。在目前在主动研究下的HVDC的许多方面中,本文提出了一种基于电压源转换器(VSC-MTDC,短路)的多终端HVDC系统中的补充控制器的建议,以至于潮湿的机电振荡(电源振荡阻尼或POD) 。在所提出的POD控制器(PODC)中,每个VSC站比较MTDC系统(频率设定点)的VSC站的AC连接点处测量的频率的平均值,其自身的交流输出频率。然后使用这种差异来操纵每个VSC站的主动 - (P)和电动功率(Q)喷射。所提出的PODC通过使用特征值灵敏度的概念使用协调设计方法来系统地设计,以达到电力系统中的一组机电方式所需的阻尼比,其中vsc-mtdc连接。拟议的设计方法已经在CIGRE NORDIC32A系统中进行了测试,嵌入式VSC-MTDC系统。结果表明,该拟议的PODC是有效阻尼成功的感兴趣的机电方式,它们对通信延迟具有稳健性。

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