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Architecture Approaches for 5G Millimetre Wave Access Assisted by 5G Low-Band Using Multi-Connectivity

机译:5G低频段使用多连接辅助5G毫米波访问的架构方法

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One of the key technology components envisioned for the delivery of extreme mobile broadband in 5G networks is the radio access using millimetre waves. However, using this technology, it is challenging to provide reliable and seamless data transmission to the users. Due to the propagation characteristics of millimetre waves, high interruption times may occur if line of sight is obstructed between the transmitter and the receiver. Therefore, we propagate that cellular deployment of systems using millimetre waves must be supported by the low-band (below 6 GHz) coverage and the 5G network should be able to provision multiple millimetre waves links for a user. For this purpose, we propose novel functionalities required for Multi-Connectivity in 5G. In line with our proposal, we present a set of different potential architectures for 5G radio access network and discuss their protocol and functional requirements. A qualitative assessment is carried out by comparing the required messages and the potential pros and cons for each architectural approach. Based on the evaluation, some recommendations are highlighted for the design of future 5G access network incorporating millimetre waves transmission.
机译:为在5G网络中提供极限移动宽带而设想的关键技术组件之一是使用毫米波的无线电接入。然而,使用该技术,向用户提供可靠和无缝的数据传输是具有挑战性的。由于毫米波的传播特性,如果在发射器和接收器之间的视线被挡住,则可能会发生高中断时间。因此,我们传播了使用毫米波的系统的蜂窝部署必须得到低频带(低于6 GHz)覆盖的支持,并且5G网络应该能够为用户提供多个毫米波链路。为此,我们提出了5G中多连接性所需的新颖功能。根据我们的建议,我们为5G无线电接入网络提供了一组不同的潜在架构,并讨论了它们的协议和功能要求。通过比较所需的消息以及每种体系结构方法的潜在利弊,可以进行定性评估。在评估的基础上,针对未来结合毫米波传输的5G接入网的设计提出了一些建议。

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