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Analysis and control of the inter-area mode phenomenon using selective One-Machine Infinite Bus dynamic equivalents

机译:使用选择性一机无穷大总线动态当量分析和控制区域间模式现象

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New insights into the application of One-Machine Infinite Bus (OMIB) equivalents to the analysis and study of the inter-area mode phenomenon in stressed power systems are provided. First, the notion of a time-varying OMIB equivalent is briefly reviewed and details of the adopted analytical model are introduced. On the basis of this representation, a systematic technique is then proposed to extract the underlying dynamics of the process directly from time-domain transient stability simulations. The analysis tool takes into account both, the dynamics of the slow inter-area oscillations and the dynamics of the fast inter-machine oscillations. Criteria to interpret inter-area oscillations in terms of the kinetic energy transfer between the most disturbed machines, and the rest of the system following the onset of a major contingency are given and methods to implement the proposed approach are discussed. A case study on a 5-area dynamic equivalent model of the Mexican interconnected system in which several static VAR compensators are used to support system voltage is presented to illustrate the developed procedures. Studies are conducted to identify and characterize the energy transfer process that accompanies the inter-area mode separation as well as to evaluate the effect of voltage support on system damping. The results show that time-varying OMIB dynamic equivalents can be used to capture the dominant features of the inter-area mode behavior, which are needed in the analysis and control of system dynamic performance.
机译:提供了对单机无限母线(OMIB)等同物在压力电力系统中区域间模式现象的分析和研究方面的新见识。首先,简要回顾了时变OMIB等效项的概念,并介绍了采用的分析模型的详细信息。在这种表示的基础上,然后提出了一种系统技术,可以直接从时域瞬态稳定性仿真中提取过程的基础动力学。分析工具同时考虑了缓慢的区域间振荡的动力学和快速的机器间振荡的动力学。给出了根据受干扰最大的机器之间的动能传递来解释区域间振荡的准则,以及在重大意外事件发生后系统其余部分的动能传递,并讨论了实现该方法的方法。提出了一个墨西哥互联系统5区动态等效模型的案例研究,其中使用了几个静态VAR补偿器来支持系统电压,以说明开发的程序。进行研究以识别和表征伴随区域间模式分离的能量传递过程,并评估电压支持对系统阻尼的影响。结果表明,时变OMIB动态等效项可用于捕获区域间模式行为的主要特征,这是分析和控制系统动态性能所必需的。

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