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Analysis of low power wireless links in smart grid environments

机译:智能电网环境中的低功耗无线链路分析

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Recently, wireless sensor networks (WSNs) have been used in various smart grid applications, including remote power system monitoring and control, power fraud detection, wireless automatic metering, fault diagnostics, demand response, outage detection, overhead transmission line monitoring, load control, and distribution automation. However, harsh smart grid environment propagation characteristics cause great challenges in the reliability of WSN communications in smart grid applications. To this end, the analysis of wireless link reliability and channel characterizations can help network designers to foresee the performance of the deployed WSN for specific smart grid propagation environments, and guide the network engineers to make design decisions for the channel modulation, encoding schemes, output power, and frequency band. This paper presents a detailed analysis of low power wireless link reliability in different smart grid environments, such as 500 kV outdoor substation environment, indoor main power control room, and underground network transformer vaults. Specifically, the proposed analysis aims to evaluate the impact of different sensor radio parameters, such as modulation, encoding, transmission power, packet size, as well as the channel propagation characteristics of different smart grid propagation environments on the performance of the deployed sensor network in smart grid. Overall, the main objective of this paper is to help network designers quantifying the impact of the smart grid propagation environment and sensor radio characteristics on low power wireless link reliability in harsh smart grid environments.
机译:最近,无线传感器网络(WSN)已用于各种智能电网应用中,包括远程电力系统监视和控制,电力欺诈检测,无线自动计量,故障诊断,需求响应,中断检测,架空传输线监视,负载控制,和配电自动化。但是,恶劣的智能电网环境传播特性给智能电网应用中的WSN通信的可靠性带来了巨大挑战。为此,对无线链路可靠性和信道特性的分析可以帮助网络设计人员预见针对特定智能电网传播环境的已部署WSN的性能,并指导网络工程师为信道调制,编码方案,输出做出设计决策。功率和频带。本文详细分析了不同智能电网环境中的低功率无线链路可靠性,例如500 kV室外变电站环境,室内主电源控制室和地下网络变压器保险库。具体而言,提出的分析旨在评估不同传感器无线电参数(如调制,编码,传输功率,数据包大小以及不同智能电网传播环境的信道传播特性)对部署的传感器网络性能的影响。智能电网。总体而言,本文的主要目的是帮助网络设计人员量化智能电网传播环境和传感器无线电特性对恶劣智能电网环境中低功率无线链路可靠性的影响。

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