伊朗输变电系统物联网与智能电网融合的挑战与机遇

Adel Nazemi Babadi, S. Nouri, S. Khalaj
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引用次数: 7

摘要

物联网是指通过互联网收集、分析和交换数据的物理设备的互联,包括无源传感器和执行器。最近,AMI在在线抄表和控制的准确性方面取得了巨大的进步,引起了工商界的关注和好评。现代智能电表可以监控电力消耗、供电特性及其环境(防止篡改),并将存储的数据发送回公用事业公司,用于负荷监控、趋势分析、网络损耗管理和计费目的。具有上述功能的AMI系统通常被视为智能电网1.0。国际上最近的发展和举措都集中在利用物联网技术创建智能电网2.0上。智能电网2.0基于一个合格的点对点架构,消除了智能电网1.0的缺点。本文对SG 1.0和SG 2.0进行了详细的比较和分析,并描述了物联网与SG 1.0融合所带来的挑战和机遇。此外,作为一个案例研究,提出了物联网在伊朗传输电力系统中实施的不同问题和挑战,并说明了一种称为电力物联网(PIoT)的概念结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Challenges and opportunities of the integration of IoT and smart grid in Iran transmission power system
IoT refers to the internetworking of physical devices including passive sensors and actuators that collect, analyze and exchange data via the Internet. Recently, AMI has attracted attention and praise from both industry and commerce for the vast improvements it has brought about in the accuracy of online meter reading and control. The modern Smart Meter can monitors electricity consumption, supply characteristics and its environment (against tampering) and sends the stored data back to the utility company for load monitoring, trend analysis, network loss management and billing purposes. The AMI system with aforementioned capabilities is generally regarded as Smart Grid 1.0. Recent developments and initiatives across the international landscape have been focused around leveraging IoT technologies to create Smart Grid 2.0. Smart Grid 2.0 is based on a qualified peer-to-peer architecture, which eliminates the disadvantages of SG 1.0. In this paper, a detailed comparison and analysis between SG 1.0 and 2.0 is done and the challenges and opportunities associated with the integration of IoT and SG 1.0 is described. Also, as a case study, different problems and challenges of IoT implementation in Iran transmission power system is presented and a conceptual structure, named as Power IoT (PIoT) is illustrated.
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