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AC Micro Grid Flexible Simulation Utility for SCADA System Development

机译:AC微电网灵活仿真实用性,用于SCADA系统开发

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Nowadays, it is a common practice to utilize supervisory control and data acquisition (SCADA) based system for centralized power flow management and control of all scales of power systems. That ranges from national wide common utility to small isolated micro-grid. However, the software development cycle including design, deployment, debugging and test is rather complicated due to the numerous situations that might occur as well as the large number of input/output involved. This paper presents a flexible software utility that can be reconfigured to simulate wide range of AC micro-grid configurations and operation scenarios. The utility is designed using object oriented programming paradigm, and implemented using C++programming language. The design allows for providing simulation results for SCADA platform in real-time. It allows multi-level of modeling and numerical solution. In this paper, the RungeKutta and Newton-Raphson methods are combined to simulate different scenarios of AC micro-grid operation. The consistency of results and efficiency of dynamic simulation indicates the effectiveness of proposed utility.
机译:如今,利用基于监管控制和数据采集(SCADA)的集中电流管理和控制所有电力系统尺度的控制是一种常见的做法。从全国广泛的普通效用到小型孤立的微电网。但是,由于可能发生的许多输入/输出以及所涉及的大量输入/输出,软件开发周期(包括设计,部署,调试和测试)相当复杂。本文介绍了一个灵活的软件实用程序,可以重新配置以模拟各种AC微电网配置和操作场景。该实用程序使用面向对象的编程范例设计,并使用C ++编程语言实现。该设计允许实时为SCADA平台提供仿真结果。它允许多级建模和数值解决方案。在本文中,rungeKutta和牛顿Raphson方法组合以模拟交流微电网操作的不同场景。动态模拟的结果和效率的一致性表明了所提出的效用的有效性。

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