PSCAD中用于电力系统仿真的嵌入式通信网络模拟器

N. Nasiriani, R. Ramachandran, K. Rahimi, Y. P. Fallah, P. Famouri, S. Bossart, K. Dodrill
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引用次数: 14

摘要

电力系统中基于分布式通信的控制方案的出现,强调需要一个现实的电力系统仿真工具,允许包含通信组件。在研究电力系统动态控制机制时,测量值和指令传递中的时延、损耗等通信性能参数会影响控制结果,应予以考虑。在本文中,我们介绍了我们开发的方法和工具,用于电力系统暂态仿真(PSCAD)的现成产品内部的通信网络仿真。我们特别介绍了在PSCAD中实现嵌入式通信网络模拟器所需的模块的结构设计和接口,并简要介绍了电力系统工程师如何在设计中使用这些模块。此外,我们还提出了一个使用通信来稳定可再生能源和储能集成电力系统的控制方案示例。我们使用IEEE 13节点测试馈线作为我们的案例研究。风力发电机和电池连接到系统,以增加更多的动态行为;设计了一种控制系统,该控制系统使用PSCAD实现通信接口和模块。该测试系统用于验证和验证嵌入式通信模拟器及其实现。
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An embedded communication network simulator for power systems simulations in PSCAD
The emergence of distributed communication based control schemes in power systems emphasizes the need for a realistic power systems simulation tool that allows inclusion of communication components. Communication performance parameters like delay and loss in transfer of measurements and commands can affect the result of control and should be taken into account while studying a control mechanism over power system dynamics. In this paper we present the method and tools that we have developed to allow simulation of communication networks inside off-the-shelf product for power system transient simulation, PSCAD. In particular we present the structural designs and interfaces of modules that are needed for implementing an embedded communication network simulator in PSCAD, and provide a brief guide on how power system engineers could use these modules in their designs. In addition, we present an example of a control scheme using communication for stabilizing a power system that incorporates integration of a renewable energy source and energy storage. We use the IEEE 13-node test feeder as our case study. A wind generator and battery are connected to the system to add more dynamic behavior; a control for the system has been designed which works with communication interface and modules implemented in PSCAD. The test system is used to validate and verify the embedded communication simulator and its implementation.
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