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Key Aspects of Smart Grid Design for Distribution System Automation: Architecture and Responsibilities ☆

机译:用于配电系统自动化的智能电网设计的关键方面:体系结构和职责☆

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摘要

In the conventional distribution network, systems designed for the control of individual constituents are autonomous with each other with respect to architectures and controlling. Thus, centralized control and integrated functionality are the major challenges faced by the distribution system operators. To overcome these issues, the term “distribution system automation” came into picture by using information and communications technology (ICT)as a resolution that integrate all the critical constituents of a distribution system. This develops a smart environment at power distribution level, called as “smart microgrid” that can optimize the system economy and improve the system resiliency. The major challenge lies in distribution system automation is the selection of proper architecture and communications. In view of all these aspects, this paper present an overview of distribution system automation as a part of smartgrid initiatives and its important features viz., architecture layout and responsibilities.
机译:在传统的分配网络中,设计用于控制各个组成部分的系统在体系结构和控制方面彼此独立。因此,集中控制和集成功能是配电系统运营商面临的主要挑战。为了克服这些问题,术语“配电系统自动化”通过使用信息和通信技术(ICT)作为一种解决方案,将配电系统的所有关键组成部分整合在一起而得到了体现。这将在配电级别开发一个智能环境,称为“智能微电网”,可以优化系统经济性并提高系统弹性。主要的挑战在于配电系统自动化是选择适当的体系结构和通信。鉴于所有这些方面,本文概述了作为智能电网计划一部分的配电系统自动化及其重要特征,即架构布局和职责。

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