用于一次频率控制的硬件在环实时仿真框架

J.A. Barrios-Gomez, F. Sanchez, G. Claudio, F. Gonzalez-Longatt, M. Acosta, S. Denysiuk, H. Strelkova
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引用次数: 1

摘要

本文提出了一个实时(硬件在环)HIL仿真的框架,该框架包括目标实时仿真计算机和开源系统的制定步骤,这是实时仿真建模的重要元素。为了进行测试,提出了单区域电力系统的频率响应实现,包括一次频率控制。电力系统准备在与MATLAB Simulink兼容的RT-Lab软件中实现,以便在Opal OP4510器件上进行实时仿真。此外,控制器采用Simulink设计,可通过Arduino编程平台实现;仿真和性能分析结果表明,对于采用HIL提出的情况,主控制发生在频率变化的几秒内。该控制有助于在发电功率和需求功率之间重新建立平衡,从而稳定系统频率。利用该框架制定的元件成功地用于初级频率控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Framework for Real-Time Simulation of Hardware in the Loop Applied to Primary Frequency Control
This research paper proposes a framework to perform (hardware in the loop) HIL simulation in real-time (RT), the framework includes steps for the formulation of the Target RT Computer and Open Source System, which are important elements in RT modelling. In order to carry out tests, the implementation of the frequency response of a single area electric power system, including primary frequency control, is proposed. The electric power system was prepared to be implemented in the RT-Lab software that is compatible with MATLAB Simulink, in order to simulate in real-time with the Opal OP4510 device. Besides, the controller was designed in Simulink to be able to implement through the Arduino programming platform; they were also connected to work in HIL in RT. The results of the simulation and performance analysis show that for the case proposed with HIL, the primary control happens within a few seconds of the frequency variation. The control helps to reestablish the balance between the generated power and power demanded, thus stabilizing the system frequency. Elements formulated using this framework were successfully used in the primary frequency control.
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