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An approach for wide-area damping control using multiple DFIG-based wind farm to deal with communication dropouts

机译:一种使用多个基于DFIG的风电场进行广域阻尼控制的方法来处理通信中断

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In this paper, a systematic approach is proposed for wide-area oscillation damping control, which can handle data-packet dropout in the communication channels of a smart power grid with large-scale deployment of distributed and networked Phasor Measurement Units (PMUs) and wind energy resources. To that end, a reduced order dynamic equivalent model of the New England-New York power system with replacement of two existing synchronous generators (SGs) by two doubly-fed induction generator (DFIG)-based wind farms (WFs) is considered. One of these SGs was equipped with a power system stabilizer (PSS). The issues with electromechanical oscillation damping control through WFs using locally available signals is identified and a methodical way for appropriate selection of control input and remote feedback signals through modal analysis is presented. The remote feedback signals transmitted through communication channels encounter data dropout which is characterized by the Gilbert-Elliott model. Deterioration in the performance of the oscillation damping control is demonstrated when data-packet dropout takes place in the remote feedback signals from PMUs. An Observer-driven Reduced Copy (ORC) approach is proposed to improve the damping performance under data-packet drop scenarios where conventional feedback would suffer. Nonlinear time-domain simulations following large large disturbances (e.g., faults, line outages, etc.) demonstrate that the ORC gives significantly better performance compared to conventional feedback under higher data drop situations.
机译:本文提出了一种用于大范围振荡阻尼控制的系统方法,该方法可以处理智能电网通信信道中的数据包丢失,并且可以大规模部署分布式和联网的相量测量单元(PMU)和风力能源。为此,考虑了新英格兰-纽约电力系统的降阶动态等效模型,其中用两个基于双馈感应发电机(DFIG)的风电场(WF)替换了两个现有的同步发电机(SG)。这些SG之一配备了电源系统稳定器(PSS)。与机电振荡通过使用WFS本地可用的信号衰减控制的问题被识别和控制输入,并通过模态分析远程反馈信号的适当选择有条不紊的方式被呈现。通过通信通道传输的远程反馈信号会遇到数据丢失,该数据丢失的特征是吉尔伯特-埃利奥特(Gilbert-Elliott)模型。当数据包丢失发生在来自PMU的远程反馈信号中时,说明了振动阻尼控制性能的下降。提出了一种由观察者驱动的精简副本(ORC)方法,以改善数据包掉落情况下传统反馈会受到影响的阻尼性能。在较大的干扰(例如故障,线路中断等)之后进行的非线性时域仿真表明,与传统的反馈相比,在更高的数据丢失情况下,ORC的性能要好得多。

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