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Realizing smart meter connectivity: Analyzing the competing technologies Power line communication, mobile telephony, and radio frequency using the best worst method

机译:实现智能仪表连接:使用最佳最差方法分析竞争技术电力线通信,移动电话和射频

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摘要

The world is faced with various societal challenges related to e.g. climate change and energy scarcity. To address these issues, complex innovative systems may be developed such as smart grids. When these systems are realized challenges pertaining to renewable energy and sustainability may, in part, be solved. To implement them, generally accepted common standards should be developed and used by firms and society so that the technological components can be connected and quality and safety requirements of smart grids and their governance can be guaranteed. This paper studies a subcomponent of the smart grid. Specifically, the paper studies competing technologies for a standard means of interface between the smart meter and the concentration point for collecting meter data. Three types of communication technologies for the interface are currently battling for standard dominance: Power line communication, Mobile telephony, and Radio frequency. Nine relevant standard dominance factors were found: operational supremacy, technological superiority, compatibility, flexibility, pricing strategy, timing of entry, current installed base, regulator, and suppliers. The Best-Worst Method was applied to calculate the factors' relative weights. The results show that experts believe that Power line communication has a high chance of becoming dominant and that the most important factor affecting standard success is technological superiority. The relative weights per factor are explained and theoretical and practical contributions, limitations, and areas for further research are discussed.
机译:世界面临着与诸如气候变化和能源短缺。为了解决这些问题,可以开发复杂的创新系统,例如智能电网。当实现这些系统后,与可再生能源和可持续性有关的挑战将得到部分解决。要实施这些标准,公司和社会应制定并使用公认的通用标准,以便可以连接技术组件,并可以确保智能电网的质量和安全要求及其治理。本文研究了智能电网的子组件。具体地说,本文研究了竞争技术,这些技术是智能电表和用于收集电表数据的集中点之间的标准接口方式。目前,接口的三种通信技术正在争夺标准的主导地位:电力线通信,移动电话和射频。找到了九个相关的标准优势因素:运营至上,技术优势,兼容性,灵活性,定价策略,进入时间,当前安装的基地,监管机构和供应商。采用最佳最差方法来计算因子的相对权重。结果表明,专家们认为,电力线通信很有可能成为主导,而影响标准成功的最重要因素是技术优势。解释了每个因素的相对权重,并讨论了理论和实践上的贡献,局限性以及需要进一步研究的领域。

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