Review of methods for modeling and control of cyber-physical systems in multi-energy microgrids

N. V. Tomin, A. V. Domyshev, E. A. Barakhtenko, V. A. Shakirov, A. N. Kozlov, I. Sosnovsky, Fang Liu, D. Sidorov
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Abstract

The article analyzes the development of methods for modeling and control of multi-energy microgrids through cyber-physical systems. We used the methods of literature review and meta-analysis based on publications from international databases Scopus and Web of Science, Russian database eLibrary, digital platform IEEEXplore et al. According to the analysis, Smart Grid implementation drives the development of cyber-physical systems. As summarized in this study, control interfaces, data transmission channels, and remote debugging ports are vulnerable parts of IoT devices that can possibly be attacked by intruders. A review of the recent publications in this field finds multi-agent technologies to be an effective approach not only for the operational control of multi-energy microgrid modes, but also for the construction of its reliable information network at the level of medium and low voltage systems. In the field of distributed energy systems, literature review of information technology indicates that the more capabilities are added to receive and process various kinds of information (transaction data, mode parameters, status of controllers, etc.) from external sources, the more vulnerable a multi-energy microgrid is to any cyber threats. Modern mathematical methods such as artificial intelligence, dynamic optimization, and multi-agent approaches should be used to effectively solve the problem of load distribution between different energy sources with cost minimization.
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多能源微电网网络物理系统建模与控制方法综述
文章分析了通过网络物理系统对多能源微电网进行建模和控制的方法的发展。根据分析,智能电网的实施推动了网络物理系统的发展。正如本研究中所总结的,控制接口、数据传输通道和远程调试端口是物联网设备的易受攻击部分,有可能受到入侵者的攻击。综观该领域的最新出版物,我们发现多代理技术不仅是多能源微电网模式运行控制的有效方法,也是在中低压系统层面构建可靠信息网络的有效方法。在分布式能源系统领域,有关信息技术的文献综述表明,接收和处理来自外部的各种信息(交易数据、模式参数、控制器状态等)的能力越强,多能源微电网就越容易受到任何网络威胁。应采用人工智能、动态优化和多代理方法等现代数学方法,有效解决不同能源之间的负荷分配问题,并实现成本最小化。
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