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LAA-based LTE and ZigBee coexistence for unlicensed-band smart grid communications

机译:基于LAA的LTE和ZigBee共存,用于无牌乐队智能电网通信

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The advent of smart grid introduces abundant number of smart meters which require bidirectional reliable communication. The deployment of advanced metering infrastructure (AMI) in smart grid networks will be auspicious if the existing infrastructure of LTE networks can be utilized. On the other hand, use of LTE infrastructure and spectrum by AMIs will further load the already congested broadband wireless networks. Recently, use of the unlicensed spectrum by the LTE technology is seen as a promising approach to offload the existing traffic from the licensed spectrum. In our study, we investigate the coexistence of LTE and ZigBee networks at the unlicensed frequency band of 2.4 GHz. We consider a time division duplexing (TDD)-LTE system accompanied by ZigBee network with FTP traffic model for system level simulations. The simulation results demonstrate that the simultaneous operation of LTE and ZigBee on the 2.4 GHz band reduces ZigBee's performance, but still meets the data communication requirements for AMI as prescribed by Department of Energy (DoE).
机译:智能电网的出现引入了丰富的智能仪表,需要双向可靠的通信。如果可以使用LTE网络的现有基础架构,智能电网网络中的高级计量基础设施(AMI)将是吉祥的。另一方面,使用AMI的LTE基础设施和频谱将进一步加载已经拥挤的宽带无线网络。最近,通过LTE技术使用未经许可的频谱被视为有希望从许可频谱卸载现有流量的有希望的方法。在我们的研究中,我们研究了LTE和ZigBee网络在2.4 GHz的未经许可的频带处的共存。我们考虑一个时分双工(TDD)-LTE系统伴随着ZigBee网络,具有用于系统级模拟的FTP流量模型。仿真结果表明,LTE和ZigBee在2.4 GHz频段上的同时操作可降低ZigBee的性能,但仍然符合能源部(DOE)规定的AMI的数据通信要求。

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