首页> 外文会议>International Universities Power Engineering Conference(UPEC 2004) vol.1; 20040906-08; Bristol(GB) >COORDINATED CONTROL OF PSS AND FACTS FOR POOR DAMPING LONG-TERM OSCILLATIONS IN MULTI-MACHINE POWER SYSTEMS
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COORDINATED CONTROL OF PSS AND FACTS FOR POOR DAMPING LONG-TERM OSCILLATIONS IN MULTI-MACHINE POWER SYSTEMS

机译:多机电力系统中阻尼较弱的长期振荡的PSS与事实的协调控制

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摘要

The stabilization of power system oscillations between interconnected areas is very essential for the secure system operation. Although PSS and FACTS devices have been applied to multi-machine power systems for enhancing the system stability, only use of the conventional PSS may not provide sufficient damping particularly for inter-area oscillations. In these circumstances, FACTS controllers are expected to be effective solutions. Furthermore, in recent years, with the deregulation of the electricity market, the traditional concepts and practices of power systems that new construction of equipment should be continued to maintain the supply reliability have changed. Better utilization of the existing power systems to increase capacities by allocating FACTS devices becomes imperative. However, FACTS, such as TCSC has been used conventionally to regulate the local mode oscillation. In this paper, a coordinated control of PSS and FACTS devices is proposed to improve the inter-area mode oscillation at the minimum cost. The approach presented here enables us to allocate a set of TCSC to improve the stability of interconnected power systems. The proposed approach determines the location of controllers by making use of the eigenvalue analysis, the active power sensitivity and the Linear Quadratic Regulator. Moreover, this approach adopts the H infinitive norm as a stability index for optimally allocating controllers.
机译:互连区域之间的电力系统振荡的稳定对于安全系统操作非常重要。尽管PSS和FACTS装置已应用于多机电源系统以增强系统稳定性,但仅使用常规PSS可能无法提供足够的阻尼,特别是对于区域间振荡。在这种情况下,FACTS控制器有望成为有效的解决方案。此外,近年来,随着电力市场的放宽,电力系统的传统概念和实践已经改变,应当继续新建设备以维持供电可靠性。必须通过分配FACTS设备更好地利用现有电力系统来增加容量。但是,FACTS(例如TCSC)通常用于调节本地模式振荡。本文提出了一种PSS和FACTS器件的协调控制,以最小的成本来改善区域间模式的振荡。此处介绍的方法使我们能够分配一组TCSC,以提高互连电源系统的稳定性。所提出的方法通过利用特征值分析,有功功率灵敏度和线性二次调节器来确定控制器的位置。此外,此方法采用H不定式范数作为稳定性指标,以最佳地分配控制器。

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