Okasaka Shozo, Weiler Richard J, Keusgen Wilhelm, Pudeyev Andrey, Maltsev Alexander, Karls Ingolf, Sakaguchi Kei
AVC Networks Company, Panasonic Corporation, Yokohama 224-8539, Japan.
Department of Wireless Communications and Networks, Fraunhofer Heinrich Hertz Institute, Berlin 10587, Germany.
Sensors (Basel). 2016 Aug 25;16(9):1362. doi: 10.3390/s16091362.
The fifth-generation mobile networks (5G) will not only enhance mobile broadband services, but also enable connectivity for a massive number of Internet-of-Things devices, such as wireless sensors, meters or actuators. Thus, 5G is expected to achieve a 1000-fold or more increase in capacity over 4G. The use of the millimeter-wave (mmWave) spectrum is a key enabler to allowing 5G to achieve such enhancement in capacity. To fully utilize the mmWave spectrum, 5G is expected to adopt a heterogeneous network (HetNet) architecture, wherein mmWave small cells are overlaid onto a conventional macro-cellular network. In the mmWave-integrated HetNet, splitting of the control plane (CP) and user plane (UP) will allow continuous connectivity and increase the capacity of the mmWave small cells. mmWave communication can be used not only for access linking, but also for wireless backhaul linking, which will facilitate the installation of mmWave small cells. In this study, a proof-of-concept (PoC) was conducted to demonstrate the practicality of a prototype mmWave-integrated HetNet, using mmWave technologies for both backhaul and access.
第五代移动网络(5G)不仅将增强移动宽带服务,还将实现大量物联网设备的连接,如无线传感器、仪表或执行器。因此,预计5G的容量将比4G增加1000倍或更多。毫米波(mmWave)频谱的使用是使5G实现如此容量增强的关键因素。为了充分利用毫米波频谱,预计5G将采用异构网络(HetNet)架构,其中毫米波小小区叠加在传统宏蜂窝网络之上。在毫米波集成的HetNet中,控制平面(CP)和用户平面(UP)的分离将实现连续连接并增加毫米波小小区的容量。毫米波通信不仅可用于接入链路,还可用于无线回程链路,这将便于毫米波小小区的安装。在本研究中,进行了概念验证(PoC),以展示使用毫米波技术进行回程和接入的毫米波集成HetNet原型的实用性。