Simulator for Automation and Control Systems in a Power System

V. Calofir, I. Fagarasan, N. Arghira, Mircea Stefan Simoiu, G. Stamatescu, Cristina Nichiforov, S. S. Iliescu
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Abstract

Through the future Smart Grid influenced by the challenges brought by distributed and unpredictable generation, limited energy storage infrastructure or shifting consumption patterns, the real-time large-scale system control becomes a necessity. When several energy concepts are translated into simulated processes, it is important to implement and test a large range of applications from process control, electrical grid protection systems, automatic line/reserve switching, monitoring and control of energy systems, for training reasons. Energy applications can vary from generation, transport/distribution and consumption, these covering a wide area of applications of discrete and continuous control. In this context, the paper presents the simulator system architecture, implemented applications and field necessity. As shown in the paper, the simulator applications vary from generation control to load control, including various specific automation functions and energy management in the grid.
电力系统自动化与控制系统模拟器
未来的智能电网将面临分布式、不可预测的发电、有限的储能基础设施或不断变化的消费模式带来的挑战,实时大规模的系统控制成为一种必要。当几个能源概念转化为模拟过程时,为了培训的原因,重要的是实施和测试从过程控制,电网保护系统,自动线/备用切换,能源系统的监测和控制的大范围应用。能源应用可以从发电、运输/分配和消费中变化,这些涵盖了离散和连续控制的广泛应用领域。在此背景下,本文介绍了仿真系统的体系结构、实现应用和现场需求。如本文所示,模拟器的应用范围从发电控制到负荷控制,包括电网中各种特定的自动化功能和能源管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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