Integrated Energy Information Physical System Model and its Simulation Control

Kunpeng Zhao, Yongli Wang, Jiantao Kou, Daomin Qu, Jie Bai, Huanran Dong, Minhan Zhou
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引用次数: 2

Abstract

The integrated energy system covers a variety of energy subsystems such as power supply, heating, cooling, and gas supply. The energy subsystems are tightly coupled, which greatly improves the efficiency of energy use. At present, the requirements of the integrated energy system on the coordination control technology of physics and information are constantly increasing, and the cyber Physical System (CPS) can well solve the problem. Based on the integrated energy system, this paper proposes an information physical system architecture for integrated energy, and establishes an energy network model, an energy coupling model, and an information system model. The time-lag integrated energy information physics system is coordinated and controlled using consistency theory, and simulation experiments are conducted. The simulation results prove the effect of information delay on the operation of the physical system and the effectiveness of the consistency theory on the coordinated control of the system.
综合能源信息物理系统模型及其仿真控制
综合能源系统包括供电、供热、供冷、供气等多种能源子系统。能源子系统紧密耦合,大大提高了能源利用效率。目前,综合能源系统对物理与信息协调控制技术的要求不断提高,而网络物理系统(CPS)可以很好地解决这一问题。基于集成能源系统,提出了集成能源的信息物理系统架构,建立了集成能源网络模型、能量耦合模型和信息系统模型。利用一致性理论对时滞集成能量信息物理系统进行了协调控制,并进行了仿真实验。仿真结果证明了信息延迟对物理系统运行的影响以及一致性理论对系统协调控制的有效性。
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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