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Fault Detection, Isolation and Restoration Test Platform Based on Smart Grid Architecture Model Using Intenet-of-Things Approaches

机译:基于物联网方法的基于智能电网架构模型的故障检测,隔离与恢复测试平台

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To systematically shift existing distribution outage management paradigms to smart and more efficient schemes, we need to have an architectural overview of Smart Grids to reuse the assets as much as possible. Smart Grid Architecture Model offers a support to design such emerging use cases by representing interoperability aspects among component, function, communication, information, and business layers. To allow this kind of interoperability analysis for design and implementation of Fault Detection, Isolation and Restoration function in outage management systems, we develop an Internet-of-Things-based platform to perform real time co-simulations. Physical components of the grid are modeled in Opal-RT real time simulator, an automated Fault Detection, Isolation and Restoration algorithm is developed in MATLAB and an MQTT communication has been adopted. A 2-feeder MV network with a normally open switch for reconfiguration is modeled to realize the performance of the developed co-simulation platform.
机译:为了将现有的配电中断管理范例系统地转换为智能且更高效的方案,我们需要对智能电网进行架构概述,以尽可能地重用资产。智能网格体系结构模型通过表示组件,功能,通信,信息和业务层之间的互操作性方面,为设计此类新兴用例提供了支持。为了允许这种互操作性分析用于故障管理系统中故障检测,隔离和恢复功能的设计和实现,我们开发了一个基于物联网的平台来执行实时协同仿真。在Opal-RT实时模拟器中对网格的物理组件进行建模,在MATLAB中开发了自动的故障检测,隔离和恢复算法,并采用了MQTT通信。对带有常开开关以进行重新配置的2馈线MV网络进行建模,以实现开发的协同仿真平台的性能。

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