INSPIRE: Integrated co-simulation of power and ICT systems for real-time evaluation

H. Georg, Sven C. Müller, N. Dorsch, C. Rehtanz, C. Wietfeld
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引用次数: 51

Abstract

Future power systems in terms of Cyber - Physical Energy Systems (CPES) apply the integration of IT and physical processes using local and wide area communication networks. The smart grid is a typical example of the application of CPES and poses additional challenges to the engineering as these networks consist of two components: the power system itself and an underlying communication network applied for transmitting monitoring and control information. Therefore, performance evaluations of CPES need to take into account both networks in detail in order to provide meaningful results. In this paper, we introduce our simulation environment INtegrated co-Simulation of Power and ICT systems for Real-time Evaluation (INSPIRE), which is based on the Hybrid Simulator Architecture [1] and capable of evaluating both power system and communication network within a co-simulation framework. Besides the simulator architecture, we detail our time synchronization approach, which is applied for interconnecting communication and power system simulation. Secondly, we present reference scenarios and configuration settings for the combined simulation system. Finally, we introduce the first performance evaluation carried out using INSPIRE, covering characteristics of the communication network and highlighting the retroactive effects on the power system using an exemplary control algorithm.
INSPIRE:电力和ICT系统的集成联合仿真,用于实时评估
未来的电力系统在网络-物理能源系统(CPES)方面应用信息技术和物理过程的集成,使用本地和广域通信网络。智能电网是CPES应用的典型例子,由于这些网络由两部分组成:电力系统本身和用于传输监测和控制信息的底层通信网络,因此对工程提出了额外的挑战。因此,CPES的绩效评价需要详细考虑这两个网络,以便提供有意义的结果。在本文中,我们介绍了我们的仿真环境,电力和ICT系统实时评估集成联合仿真(INSPIRE),它基于混合模拟器架构[1],能够在联合仿真框架内评估电力系统和通信网络。除了模拟器的结构外,我们还详细介绍了我们的时间同步方法,该方法可用于互联通信和电力系统仿真。其次,给出了组合仿真系统的参考场景和组态设置。最后,我们介绍了使用INSPIRE进行的第一次性能评估,涵盖了通信网络的特性,并使用示例性控制算法强调了对电力系统的追溯影响。
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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