Design of the HELIGS high-performance transmission-distribution-communication-market go-simulation framework

Design of the HELIGS high-performance transmission-distribution-communication-market go-simulation framework
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HELIGS高性能输配电通信市场仿真框架设计

DOI:
10.1109/mscpes.2017.8064542
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发表时间:
2017
期刊:
2017 Workshop on Modeling and Simulation of Cyber-Physical Energy Systems (MSCPES)
影响因子:
--
通讯作者:
J. Fuller
J. Fuller
中科院分区:
--
文献类型:
--
作者:
B. Palmintier;D. Krishnamurthy;P. Top;Steve S. Smith;J. Daily;J. Fuller

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本文描述了大规模基础设施协同仿真分层引擎 (HELICS) 的设计原理,这是一种用于电力系统的新型开源网络物理能源协同仿真框架。 HELICS 旨在支持与现成的电力系统、通信、市场和最终使用工具的超大规模(100,000 多个联邦成员)联合仿真。其他关键功能包括跨平台操作系统支持、事件驱动(例如分组通信)和时间序列(例如功率流)模拟的集成,以及联邦之间共同迭代的能力,以确保每个时间步骤的物理模型收敛。描述需求后,我们评估现有的联合仿真框架,包括高级架构 (HLA) 和功能模型接口 (FMI),我们得出的结论是,没有一个框架提供所需的功能。然后我们描述新的分层 HELICS 架构的设计。
This paper describes the design rationale for the Hierarchical Engine for Large-scale Infrastructure Co-Simulation (HELICS), a new open-source, cyber-physical-energy co-simulation framework for electric power systems. HELICS is designed to support very-large-scale (100,000+ federates) co-simulations with off-the-shelf power-system, communication, market, and end-use tools. Other key features include cross-platform operating system support, the integration of both event-driven (e.g., packetized communication) and time-series (e.g., power flow) simulations, and the ability to co-iterate among federates to ensure physical model convergence at each time step. After describing the requirements, we evaluate existing co-simulation frameworks, including High-Level Architecture (HLA) and Functional Mockup Interface (FMI), and we conclude that none provide the required features. Then we describe the design for the new, layered HELICS architecture.