Application of the Trajectory Sensitivity Theory to Small Signal Stability Analysis

E. Cardenas, Alejandro Martínez, C. R. F. Esquivel
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Abstract

The security assessment of power systems represents one of the principal studies that must be carried out in energy control centers. In this context, small-signal stability analysis is very important to determine the corresponding control strategies to improve security under stressed operating conditions of power systems. This chapter details a practical approach for assessing the stability of power system ’ s equilibrium points in real time based on the concept of trajectory sensitivity theory. This approach provides complementary information to that given by selective modal analysis: it determines how the state variables linked with the critical eigenvalues are affected by the system ’ s parameters and also determines the way of judging how the system ’ s parameters affect the oscillatory behavior of a power system. The WSCC 9-bus and a 190-buses equivalent system of the Mexican power system are used to demonstrate the generality of the approach as well as how its application in energy management systems is suitable for power system operation and control.
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轨迹灵敏度理论在小信号稳定性分析中的应用
电力系统安全评估是能源控制中心必须开展的主要研究之一。在这种情况下,小信号稳定性分析对于确定相应的控制策略以提高电力系统在应力工况下的安全性至关重要。本章详细介绍了一种基于轨迹灵敏度理论的电力系统平衡点实时稳定性评估的实用方法。这种方法为选择模态分析提供了补充信息:它确定了与临界特征值相关联的状态变量如何受到系统参数的影响,也确定了判断系统参数如何影响电力系统振荡行为的方法。以WSCC 9总线和墨西哥电力系统的190总线等效系统为例,展示了该方法的通用性,以及该方法在能源管理系统中的应用如何适用于电力系统的运行和控制。
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