Hybrid modeling and co-simulation of district heating systems with distributed energy resources

Eero Vesaoja, Heikki Nikula, S. Sierla, Tommi A. Karhela, P. Flikkema, Chen-Wei Yang
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引用次数: 12

Abstract

While there is intense global research activity addressing problems underpinning the re-engineering of the electrical power grid, thermal energy grids are likely to play an increasing role in energy systems. This paper describes an on-going effort in hybrid modeling and co-simulation of the physical and control domains of district heating networks. The focus is on modeling each domain using semantics and tools natural to each; we also describe the challenges of, and a method for, integration and synchronization of the simulation models in each domain. Here, the dataflow model of computation used by Simulink provides a flexible industry-grade environment for modeling the dynamics of heat energy flows, and the IEC 61499 automation architecture facilitates distributed systems modeling and enables rapid deployment to field hardware. At the application level, we show how this framework enables the study of energy flows within a producer/consumer (prosumer) and the analysis of the economic value of integrating distributed solar thermal generation and storage into a prosumer participating in a district heating network.
分布式能源区域供热系统的混合建模与联合仿真
虽然全球正在进行激烈的研究活动,以解决支持电网重新设计的问题,但热能电网可能在能源系统中发挥越来越大的作用。本文描述了区域供热网络的物理和控制领域的混合建模和联合仿真的持续努力。重点是使用每个领域自然的语义和工具对每个领域建模;我们还描述了在每个领域中仿真模型的集成和同步的挑战和方法。在这里,Simulink使用的计算数据流模型为热能流动态建模提供了灵活的工业级环境,IEC 61499自动化架构促进了分布式系统建模,并能够快速部署到现场硬件。在应用层面,我们展示了该框架如何能够研究生产者/消费者(产消者)内部的能量流动,并分析将分布式太阳能热发电和储存整合到参与区域供热网络的产消者中的经济价值。
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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