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Performance evaluation of hybrid spread spectrum based wireless smart meter sensor network with multi-user detection techniques

机译:基于多用户检测技术的基于混合扩频的无线智能电表传感器网络性能评估

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摘要

Smart grid is the process of revitalizing the 20th century aging power grid by leveraging the communication, networking and information technological advancements of the 21st century. In the communication and networking industry, the buzz word “smart grid” initiated a discussion on the selection of the appropriate communication and networking technologies for different smart grid applications. In a recent study, a trustworthy source compared different technologies like GPRS, RF mesh, PLC and 3G cellular technologies and concluded that the 3G cellular technologies meet the requirements of distribution side smart grid applications [1]. Even though 3G cellular technologies meet the requirements of smart grid applications, based on the data size specifications of smart grid applications given in [2], an analysis on the use of the current state of the art 3G cellular technologies for smart grid applications gives an indication that their usage results in high data overhead, high latency and high power consumption (during power outage) for data transfer [3]. Therefore, in our prior work we have proposed a Hybrid Spread Spectrum (HSS) based smart meter network design that can reduce the overhead, latency and power consumption in data transfer when compared to the 3G cellular technologies [3].
机译:智能电网是通过利用21世纪的通信,网络和信息技术进步来振兴20世纪老化的电网的过程。在通信和网络行业中,流行语“智能电网”引发了关于为不同的智能电网应用选择合适的通信和网络技术的讨论。在最近的研究中,一个值得信赖的消息来源将GPRS,RF网状网,PLC和3G蜂窝技术等不同技术进行了比较,得出的结论是3G蜂窝技术满足配电侧智能电网应用的要求[1]。尽管3G蜂窝技术满足智能电网应用的要求,但基于[2]中给出的智能电网应用的数据大小规格,对智能电网应用对3G蜂窝技术的最新使用情况的分析也为指示它们的使用会导致数据传输的高数据开销,高延迟和高功耗(断电期间)[3]。因此,在我们先前的工作中,我们提出了一种基于混合扩频(HSS)的智能电表网络设计,与3G蜂窝技术相比,该设计可以减少数据传输的开销,延迟和功耗[3]。

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