LTE-A载波汇聚系统中上行链路最大功率降耗分析

Banglong Xiong, Xinning Zhu, Wei Li, Gan Guo
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引用次数: 2

摘要

LTE-A系统采用载波聚合(Carrier Aggregation, CA)技术,在数据速率和频谱效率方面具有较高的性能。然而,CA技术会将上行信号的峰值平均功率比(PAPR)推向极值水平。PAPR是LTE-A用户设备(UE)的一个重要问题,因为它决定了多载波传输时PA的效率和覆盖范围。高PAPR水平的上行信号会受到功率放大器(PA)非线性的严重影响,给相邻信道带来不可接受的干扰。为了消除干扰,本文引入了一种著名的UE发射功率退退线性化技术,并分析了以最大功率降值(MPR)为代表的实际影响退退所需功率值的因素。在理论分析和实验结果的基础上,本文为类似研究和终端射频设计,特别是LTE-A系统的射频设计提供了可靠的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Maximum Power Reduction of Uplink for Carrier Aggregation in LTE-A System
Carrier Aggregation (CA) technique is adopted by LTE-A system to achieve high performance in data rate and spectral efficiency. However, CA technique will drive the Peak to Average Power Ratio (PAPR) of uplink signal to the extreme level. PAPR remains an important issue for a LTE-A User Equipment (UE) because it determines the PA efficiency and the coverage when multi-carrier transmission is employed. The uplink signal with a high level of PAPR will be severely affected by the nonlinearity of Power Amplifier (PA) and brings unacceptable interference into adjacent channels. To mitigate the interference, this paper introduces a well-known linearization technique named back off of UE transmission power and analyzes the factors which actually influence the value of power back off needed represented by Maximum Power Reduction (MPR). Based on theoretical analysis and experimental results, this paper provides credible references to the similar research and the RF design of UE especially in LTE-A system.
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