Predictive dynamic security assessment through advanced computing

Zhenyu Huang, R. Diao, Shuangshuang Jin, Yousu Chen
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引用次数: 5

Abstract

Traditional dynamic security assessment is limited by several factors and thus falls short in providing real-time information to be predictive for power system operation. These factors include the steady-state assumption of current operating points, static transfer limits, and low computational speed. This addresses these factors and frames predictive dynamic security assessment. The primary objective of predictive dynamic security assessment is to enhance the functionality and computational process of dynamic security assessment through the use of high-speed phasor measurements and the application of advanced computing technologies for faster-than-real-time simulation. This paper presents algorithms, computing platforms, and simulation frameworks that constitute the predictive dynamic security assessment capability. Examples of phasor application and fast computation for dynamic security assessment are included to demonstrate the feasibility and speed enhancement for real-time applications.
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通过先进的计算预测动态安全评估
传统的动态安全评估受到多种因素的限制,无法为电力系统的运行提供实时的预测信息。这些因素包括当前工作点的稳态假设、静态传输限制和较低的计算速度。这解决了这些因素和框架预测动态安全评估。预测动态安全评估的主要目标是通过使用高速相量测量和应用先进的计算技术进行超实时模拟,提高动态安全评估的功能和计算过程。本文介绍了构成预测动态安全评估能力的算法、计算平台和仿真框架。以相量应用和快速计算为例,论证了在实时应用中提高相量和速度的可行性。
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