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A Control and Communications Architecture for a Secure and Reconfigurable Power Distribution System: An Analysis and Case Study

机译:一种安全和可重新配置配电系统的控制和通信架构:分析和案例研究

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The transformation of the end-to-end power grid to a digitalized, intelligent, self-healing system presents many new modeling, sensing, communications, and control challenges that must be addressed before extensive deployment can begin. Increasing the security, robustness, and efficiency of electric power infrastructure requires utilizing these automation technologies in order to continually assess and optimize system performance. In this paper, an intelligent distributed secure control architecture is presented for distribution systems to provide greater adaptive protection, with the ability to proactively reconfigure, and rapidly respond to disturbances. Detailed descriptions of functionalities at each layer of the architecture as well as the whole system are provided. Applying this comprehensive systems' approach, performance results for the IEEE 123 node test feeder are simulated and analyzed. The results show the trade-offs between system reliability, operational constraints, and costs involved. This work represents a novel strategy toward developing an analytical and multi-domain methodology to assess the effects of smart grid technologies on distribution system operations and performance.
机译:将端到端电网转换为数字化,智能,自我修复系统,呈现了许多新的建模,感知,通信和控制挑战,必须在广泛的部署开始之前解决。增加电力基础设施的安全性,鲁棒性和效率,需要利用这些自动化技术来不断评估和优化系统性能。本文提出了一种智能分布式安全控制架构,用于提供更大的自适应保护,具有主动重新配置的能力,并迅速响应干扰。提供了每个结构层的功能的详细描述以及整个系统。应用此综合系统的方法,模拟和分析了IEEE 123节点测试馈线的性能结果。结果显示了系统可靠性,运营限制和所涉及的成本之间的权衡。这项工作代表了开发分析和多领域方法的新策略,以评估智能电网技术对分布系统运营和性能的影响。

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