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Development of HELICS-based High-Performance Cyber-Physical Co-simulation Framework for Distributed Energy Resources Applications

机译:基于螺旋的高性能网络物理共模仿真框架,用于分布式能源资源应用

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The rapid growth of distributed energy resources (DERs) has prompted increasing interest in the monitoring and control of DERs through hybrid smart grid communications resulting in the typical smart grid cyber-physical system. To fully understand the interdependency between them, we propose to integrate the Network Simulator 3 (NS3) into the High Engine for Large-Scale Infrastructure Co-Simulation (HELICS), a new open-source, cyber-physical-energy co-simulation platform. This paper aims to the development and case study of the HELICS-based high performance distribution-communication co-simulation framework for the DER coordination. The novel co-simulation framework for the NS3 integrating into the HELICS is developed. The DER monitoring application about hybrid smart grid communication network design is simulated and validated on this proposed HELICS-based cyber-physical co-simulation platform.
机译:分布式能源资源(DERs)的快速增长促使通过混合智能电网通信促进对DER监控和控制的兴趣,从而导致典型的智能电网网络物理系统。为了充分了解它们之间的相互依赖性,我们建议将网络模拟器3(NS3)集成到高级发动机中,以进行大型基础设施共模(螺旋),新的开源,网络物理能量共模平台。本文旨在实现螺旋基高性能分布 - 通信共模仿真框架的开发和案例研究。开发了集成在螺旋中的NS3的新颖共模框架。关于混合智能电网通信网络设计的DER监控应用程序在基于螺旋的网络 - 物理共模平台上进行了模拟和验证。

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