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An IoT realization in an interdepartmental real time simulation lab for distribution system control and management studies

机译:跨部门实时仿真实验室中的物联网实现,用于配电系统控制和管理研究

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Modern electric distribution systems with emerging operation methods and advanced metering systems bring new challenges to the system analysis, control and management. Interdependency of cyber and physical layers and interoperability of various control and management strategies require wide and accurate test and analysis before field implementation. Real-time simulation is known as a precise and reliable method to support new system/device development from initial design to implementation. However, for the study of different application algorithms, considering the various expertise requirements, the interconnection of multiple development laboratories to a real-time simulation lab, which constitutes the core of an interdepartmental real-time simulation platform, is needed. This paper presents the implemented architecture of such an integrated lab, which serves real-time simulations to different application fields within electric distribution system domain. The architecture is an implementation of an Internet-of-Things to facilitate software in-the-loop (SIL) and hardware in-the-loop (HIL) tests. A demo of the proposed architecture is presented, applied to the testing of a fault location algorithm in a portion of a realistic distribution system model. The implemented platform is flexible to integrate different algorithms in a plug-and-play fashion through a designed communication interface.
机译:具有新兴操作方法和先进计量系统的现代配电系统给系统分析,控制和管理带来了新的挑战。网络和物理层的相互依赖性以及各种控制和管理策略的互操作性需要在现场实施之前进行广泛而准确的测试和分析。实时仿真是一种精确且可靠的方法,可支持从初始设计到实施的新系统/设备开发。但是,为了研究不同的应用算法,考虑到各种专业知识的要求,需要将多个开发实验室与实时仿真实验室互连,这构成了部门间实时仿真平台的核心。本文介绍了这种集成实验室的实现架构,该架构可为配电系统领域内的不同应用领域提供实时仿真。该体系结构是物联网的实现,以促进软件在环(SIL)和硬件在环(HIL)测试。提出了所提出的体系结构的演示,该演示将其应用于实际配电系统模型的一部分中的故障定位算法的测试。所实现的平台可以灵活地通过设计的通信接口以即插即用的方式集成不同的算法。

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