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Voltage stability assessment and enhancement of a large power system using static and dynamic approaches.

机译:使用静态和动态方法评估和增强大型电力系统的电压稳定性。

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摘要

Voltage instability initiated by induction motor dynamics has been an important issue in power system operation. The voltage instability in a power system having significant induction motor loads can be manifested either in the form of delayed voltage recovery or in the form of voltage collapse. When a power system is subjected to a disturbance in the presence of considerable induction motor loads, static analysis alone is not sufficient to determine the control actions required to restore the system voltages. Time domain simulations are required to obtain useful indications to deal with controls depending on system time evolution. The present study focuses on the application of a mix of various static and dynamic approaches to analyze and enhance the voltage stability of power systems. Static analysis is used mainly to select critical contingencies based on voltage stability margins whereas the dynamic analysis is used to find the mechanism of voltage collapse. The propagation of impact of faults from the transmission level to the distribution level is observed to examine the mechanism of voltage collapse and to determine the corrective action to mitigate the detrimental effect of the voltage collapse. The impact of induction motors on voltage stability is examined using trajectory sensitivity analysis. A novel technique based on a trajectory sensitivity index is proposed to find the suitable location for dynamic reactive power support. In this regard, the viability of FACTs controllers such as SVC and STATCOM is examined. Accordingly, the latter is found more effective for providing corrective action against voltage collapse.
机译:由感应电动机动力学引发的电压不稳定性一直是电力系统运行中的重要问题。具有大量感应电动机负载的电力系统中的电压不稳定性可以以延迟的电压恢复形式或以电压崩溃的形式表现出来。当电力系统在感应电动机负载很大的情况下遭受干扰时,仅进行静态分析不足以确定恢复系统电压所需的控制动作。需要时域仿真以获得有用的指示,以根据系统时间演变来处理控件。本研究的重点是各种静态和动态方法的混合应用,以分析和增强电力系统的电压稳定性。静态分析主要用于基于电压稳定裕度来选择紧急情况,而动态分析则用于查找电压崩溃的机理。观察故障的影响从传输级别到分布级别的传播,以检查电压崩溃的机理并确定纠正措施,以减轻电压崩溃的有害影响。使用轨迹灵敏度分析检查了感应电动机对电压稳定性的影响。提出了一种基于轨迹灵敏度指标的新技术,为动态无功功率支持找到合适的位置。在这方面,检查了FACTs控制器(例如SVC和STATCOM)的可行性。因此,发现后者对于提供针对电压崩溃的纠正措施更为有效。

著录项

  • 作者

    Sapkota, Bishnu Prasad.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:26

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