Power electronics spark new simulation challenges

O. Nayak, S. Santoso, P. Buchanan
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引用次数: 26

Abstract

ISSN 0895-0156/02/$17.00©2002 IEEE T he computer simulation of power systems has presented many challenges and opportunities over the years. Fortunately, the general nature of power systems remained relatively the same for a long period of time. This allowed power system engineers to improve modeling techniques progressively and to apply computer hardware and software technology to design study tools that met the analysis requirements. The models were based on fundamental frequency responses. However, with the wide-spread use of microprocessor-based controls and the associated advances in power electronic devices over the past 10 years, the nature of modern power systems has significantly changed. This article discusses some of the changes that have taken place in power systems and explores some of the inherent requirements for simulation technologies in order to keep up with this rapidly changing environment. Industrial examples of how power system simulation has been applied by end-users to meet the advancing requirements is provided.
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电力电子引发了新的仿真挑战
多年来,电力系统的计算机仿真提出了许多挑战和机遇。幸运的是,电力系统的一般性质在很长一段时间内保持相对不变。这使得电力系统工程师能够逐步改进建模技术,并应用计算机硬件和软件技术来设计满足分析要求的研究工具。该模型基于基频响应。然而,随着过去10年来基于微处理器的控制的广泛使用以及电力电子设备的相关进步,现代电力系统的性质发生了重大变化。本文讨论了电力系统中发生的一些变化,并探讨了仿真技术的一些固有要求,以便跟上这种快速变化的环境。提供了电力系统仿真如何被最终用户应用于满足先进要求的工业实例。
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Optimal linear control in stabilizer design Simulation and transient testing of numerical relays Deriving model parameters from field test measurements Prospective on computer applications in power Power electronics spark new simulation challenges
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