海报:商用智能手机上毫米波5G的性能和功耗特性

Xumiao Zhang, Xiao Zhu, Y. Guo, Feng Qian, Z. Morley Mao
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引用次数: 2

摘要

今年上半年,美国三家主要运营商已经宣布部署5G,这预示着下一代网络的到来。为了缩短上市时间,运营商利用5G NR进行数据平面运营,同时保留现有4G基础设施进行控制平面运营,这种部署模式被称为NSA (Non-Standalone)部署模式,定义为5G系统第一阶段。EN-DC是NSA 5G的核心技术,支持在4G基础设施下引入5G服务。它使终端能够同时连接LTE和NR,而控制平面的连接由LTE基础设施处理。在这种情况下,UE将只有一个RRC状态机。请注意,LTE RRC状态机包含RRC_CONNECTED和RRC_IDLE,它们具有不同的DRX设置,而NR RRC有一个额外的状态称为RRC_INACTIVE。在这项工作中,我们的目标是探索NSA 5G的网络和功率特性,该特性引入了惊人的高数据速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Poster: Characterizing Performance and Power for mmWave 5G on Commodity Smartphones
During the first half of this year, three major operators in the US have announced their 5G deployment, which indicates the advent of next generation networks. To reduce the time to market, carriers utilize 5G NR for data plane operations while retaining the existing 4G infrastructure for control plane operations in what is called NSA (Non-Standalone) deployment mode defined as 5G system Phase I. EN-DC is a core technology of NSA 5G which supports the introduction of 5G services under 4G infrastructure. It enables a UE to connect to LTE and NR at the same time whereas the control plane connection is handled by LTE infrastructure. In this case, the UE will have only one single RRC state machine. Note that LTE RRC state machine contains RRC_CONNECTED and RRC_IDLE with different DRX settings while NR RRC has an additional state called RRC_INACTIVE. In this work, we aim to explore network and power characteristics for NSA 5G which introduces a surprisingly high data rate.
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