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Operating modes and their regulations of voltage-sourced converter based FACTS controllers.

机译:基于电压源转换器的FACTS控制器的工作模式及其规定。

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摘要

In most published literature, a shunt VSC such as a Static Synchronous Compensator (STATCOM) is set to control the bus voltage and a series VSC such as a Static Synchronous Series Compensator (SSSC) is set to control the line power flow. In practical operations, however, there are other operating modes that are more appropriate, such as the reactive power setpoint control for a shunt converter and the fixed injected voltage control for a series converter.; In this thesis work, we aim to investigate the modeling, simulation, and control of various operating modes and their regulations of VSC-based FACTS controllers embedded in transmission networks. An efficient control mode implementation is proposed to implement steady-state dispatch of various operating modes of FACTS controllers, using an approach of separate models for shunt VSCs and for series VSCs and functional coupling by the circulating active power between them. Because the maximum dispatch benefit of a FACTS controller often occurs when it operates at its rated capacity, dispatch strategies to optimize power transfer are proposed when one or both VSCs of FACTS controller are loaded to their rated capacity.; Following the steady-state dispatch, dynamic regulator models of FACTS controllers, which take into consideration the dynamics of DC Links, are developed and implemented to evaluate their impact on transient stability during system faults and lightly damped inter-area oscillations. Based on the dynamic models, linearized models of FACTS controllers in multi-machine systems are derived using small-signal perturbations.; FACTS controllers can be utilized to improve small-signal stability by providing damping control supplemental to their regulation controls. To study the damping control effects of FACTS controllers, a new modal decomposition approach, which fully decouples all the modes in the system and considers the interaction of the other system modes to the mode of interest, is proposed to quantify levels of controllability, observability, and inner-loop gains of the linearized models. A comprehensive process that examines the damping controller gain design and the selection of damping controller input signals is developed.
机译:在大多数公开文献中,将分流VSC(例如静态同步补偿器(STATCOM))设置为控制母线电压,将串联VSC(例如静态同步串联补偿器(SSSC))设置为控制线路功率。然而,在实际操作中,还有其他更合适的工作模式,例如,并联转换器的无功功率设定值控制和串联转换器的固定注入电压控制。在本文的工作中,我们旨在研究嵌入在传输网络中的基于VSC的FACTS控制器的各种操作模式及其规则的建模,仿真和控制。提出了一种有效的控制模式实施方案,以使用分流VSC和串联VSC的单独模型以及通过它们之间循环有功功率进行功能耦合的方法来实现FACTS控制器各种运行模式的稳态调度。因为FACTS控制器的最大调度利益通常是在其额定容量下运行时发生的,所以当FACTS控制器的一个或两个VSC加载到其额定容量时,便提出了优化功率传输的调度策略。在稳态调度之后,开发并实现了FACTS控制器的动态调节器模型,该模型考虑了直流母线的动力学特性,以评估它们对系统故障和区域间轻度阻尼振荡期间的暂态稳定性的影响。基于动态模型,利用小信号扰动推导了多机系统中FACTS控制器的线性化模型。 FACTS控制器可通过提供阻尼控制来补充其调节控制,从而提高小信号的稳定性。为了研究FACTS控制器的阻尼控制效果,提出了一种新的模态分解方法,该方法将系统中的所有模式完全解耦,并考虑其他系统模式与目标模式的相互作用,以量化可控制性,可观察性,和线性化模型的内环增益。开发了检查阻尼控制器增益设计和阻尼控制器输入信号的选择的综合过程。

著录项

  • 作者

    Jiang, Xia.;

  • 作者单位

    Rensselaer Polytechnic Institute.;

  • 授予单位 Rensselaer Polytechnic Institute.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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