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Channel Sounding and Measurements for Pico Cells for LTE and Future Wireless Networks

机译:用于LTE和未来无线网络的微微电池的通道探测和测量

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摘要

Wireless networks are the preferred future access networks for both defense and civilian deployments as part of telecommunication networks. The successful implementation of long term evolution (LTE) networks and applications such as the Internet of Things (IoT) in the telecommunication infrastructure has guaranteed rates of up to 100 Mbps while supporting ultra-dense wireless access network. With the incorporation of LTE-Advanced and fifth-generation wireless protocols, the data rates are expected to reach upto 1 Gbps. Hence, there is a pertinent requirement to carry out channel measurements at sub 1 GHz, 2 GHz, and 3 GHz bands to enable the design and implementation of optimum transceivers for pico-cells of LTE and future wireless networks. For the first time measurements and comparison with standard models of channel impulse response models have also been carried out in five different terrains namely Urban, Semi-Urban, Forest, Rural, and Desert terrains in the Indian sub-continent to effectively cover a variety of deployments of future wireless access networks for defense wireless networks.
机译:无线网络是作为电信网络的一部分的防御和平民部署的首选未来访问网络。在电信基础设施中的长期演进(LTE)网络和应用程序(IOT)等互联网(物联网)的应用程序的成功实施,保证了高达100 Mbps的速率,同时支持超密集的无线接入网络。通过加入LTE-Advanced和第五代无线协议,预计数据速率将达到1 Gbps。因此,在Sub 1 GHz,2 GHz和3 GHz频带中执行信道测量的相关要求,以实现LTE和未来无线网络的微微电池的最佳收发器的设计和实现。对于第一次测量和与信道脉冲响应模型的标准模型进行比较也在五个不同的地形中进行,即城市,半城市,森林,农村和沙漠地形,在印度亚大陆有效地涵盖各种各样的用于防御无线网络的未来无线接入网络的部署。

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