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Damping electromechanical oscillations using supplementary controls at VSC-HVDC stations based on reduced low order models

机译:在VSC-HVDC站上使用基于简化低阶模型的辅助控制来抑制机电振荡

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The interconnection of remote large power systems, and the connection of large non-synchronous renewable power sources to AC power systems have found solutions by means of transmission in high voltage direct current (HVDC) using technology based on voltage source converters (VSC). This technology has the advantage of fast response the possibility of providing reactive power to AC systems, and the use of supplementary control signals to their automatic voltage regulators to improve stability AC systems. This paper proposes the computation of robust supplementary controller type H infinity based on low-order models of the power system, obtained by application of N4Sid identification technique, to be installed at the VSC converter stations of a HVDC link to dampen electromechanical weak modes. The proposed model shows that using simulated input/output data by means of typical software available at utilities is possible and useful. The methodology includes the modeling of uncertainties due to the different operational points where the power system can be placed by load variations and generation dispatch. This paper also presents a methodology for the computation of robust supplementary control at VSC-HVDC stations that guarantee robustness in a wide range of operating conditions and even better to improve the damping of electromechanical oscillations. It is also proposed a methodology for defining the weighted functions based on the uncertainties theory. Likewise, It is validated with the simulation of a critical contingency in a weakly damped system obtaining an improvement in damping of electromechanical oscillations. The robust supplementary control is compared to the performance of the classical POD.
机译:通过使用基于电压源转换器(VSC)的技术在高压直流(HVDC)中进行传输,已经找到了远程大型电力系统的互连以及大型非同步可再生电源与AC电力系统的连接的解决方案。该技术的优点是可以快速响应,可以为AC系统提供无功功率,并可以向其自动电压调节器使用补充控制信号以提高AC系统的稳定性。本文提出了一种基于电力系统低阶模型的鲁棒辅助控制器H无穷大计算方法,该模型是通过使用N4Sid识别技术获得的,该模型将安装在HVDC链路的VSC换流站上,以抑制机电弱模式。所提出的模型表明,通过公用事业处可用的典型软件使用模拟的输入/输出数据是可能且有用的。该方法包括对由于运行点不同而产生的不确定性进行建模,可以通过负载变化和发电调度来放置电力系统。本文还提出了一种用于VSC-HVDC站的鲁棒补充控制的计算方法,该方法可确保在广泛的工作条件下具有鲁棒性,甚至可以更好地改善机电振荡的阻尼。还提出了一种基于不确定性理论定义加权函数的方法。同样,它通过弱阻尼系统中的临界意外事件的仿真得到了验证,从而改善了机电振荡的阻尼。将鲁棒的辅助控制与经典POD的性能进行比较。

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