Model-based integration technology for next generation electric grid simulations

Model-based integration technology for next generation electric grid simulations
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用于下一代电网仿真的基于模型的集成技术

DOI:
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发表时间:
2012
期刊:
IEEE Power & Energy Society General Meeting
影响因子:
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通讯作者:
A. Srivastava
A. Srivastava
中科院分区:
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文献类型:
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作者:
J. Sztipanovits;G. Hemingway;A. Bose;A. Srivastava

文献摘要

被引文献

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基于仿真的电网行为评估是复杂的,因为它涉及多个,异构的,交互的网络物理系统,如域。每个仿真领域都有复杂的工具,但将它们集成到一个连贯的框架中是一项非常困难、耗时、劳动密集且容易出错的任务。这意味着计算研究不能迅速完成,这一过程不能为规划者、运营商和决策者提供及时的答案。此外,网格行为必须针对许多场景和情况进行测试,这意味着必须执行大量的模拟,覆盖潜在的可能性空间。设计和有效地部署这样的计算实验,利用多领域的工具集成智能电网是一个重大的挑战。本文解决了这些重要的问题,通过集成多个建模工具,从不同的领域在一个单一的连贯的框架集成仿真的智能电网。
Simulation-based evaluation of the behavior of the electric grid is complex, as it involves multiple, heterogeneous, interacting cyber-physical system like domains. Each simulation domain has sophisticated tools, but their integration into a coherent framework is a very difficult, time-consuming, laborintensive, and error-prone task. This means that computational studies cannot be done rapidly and the process does not provide timely answers to the planners, operators and policy makers. Furthermore, grid behavior has to be tested against a number of scenarios and situations, meaning that a huge number of simulations must be executed covering the potential space of possibilities. Designing and efficiently deploying such computational experiments by utilizing multi-domain tools for integrated smart grid is a major challenge. This paper addresses these important issues by integrating multiple modeling tools from diverse domains in a single coherent framework for integrated simulation of smart grids.