首页> 外文期刊>Proceedings of the Workshop on Principles of Advanced and Distributed Simulation >DSSnet: A Smart Grid Modeling Platform Combining Electrical Power Distribution System Simulation and Software Defined Networking Emulation
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DSSnet: A Smart Grid Modeling Platform Combining Electrical Power Distribution System Simulation and Software Defined Networking Emulation

机译:DSSnet:结合配电系统仿真和软件定义的网络仿真的智能电网建模平台

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摘要

The successful operations of modern power grids are highly dependent on a reliable and efficient underlying communication network. Researchers and utilities have started to explore the opportunities and challenges of applying the emerging software-defined networking (SDN) technology to enhance efficiency and resilience of the Smart Grid. This trend calls for a simulation-based platform that provides sufficient flexibility and controllability for evaluating network application designs, and facilitating the transitions from inhouse research ideas to real productions. In this paper, we present DSSnet, a hybrid testing platform that combines a power distribution system simulator with an SDN emulator to support high fidelity analysis of communication network applications and their impacts on the power systems. Our contributions lay in the design of a virtual time system with the tight controllability on the execution of the emulation system, i.e., pausing and resuming any specified container processes in the perception of their own virtual clocks, with little overhead scaling to 500 emulated hosts with an average of 70 ms overhead; and also lay in the efficient synchronization of the two sub-systems based on the virtual time. We evaluate the system performance of DSSnet, and also demonstrate the usability through a case study by evaluating a load shifting algorithm.
机译:现代电网的成功运行在很大程度上取决于可靠和高效的基础通信网络。研究人员和公用事业公司已经开始探索应用新兴的软件定义网络(SDN)技术来提高智能电网的效率和弹性的机遇和挑战。这种趋势要求基于仿真的平台提供足够的灵活性和可控性,以评估网络应用设计,并促进从内部研究构想到实际生产的过渡。在本文中,我们介绍了DSSnet,这是一个混合测试平台,将配电系统仿真器和SDN仿真器结合在一起,可支持对通信网络应用及其对电源系统的影响进行高保真度分析。我们的贡献在于虚拟时间系统的设计,该虚拟时间系统对仿真系统的执行具有严格的可控性,即在感知到自己的虚拟时钟的情况下暂停和恢复任何指定的容器进程,而很少的开销可扩展至500个仿真主机,平均70毫秒的开销;并且还基于虚拟时间实现了两个子系统的有效同步。我们评估DSSnet的系统性能,并通过评估负载转移算法的案例研究来证明其可用性。

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