基于srsRAN的4G通信系统设计与性能研究

X. Ye
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引用次数: 1

摘要

为了实现4G通信系统的灵活构建和性能测试,本文采用GPP(通用处理器)和USRP作为软件定义无线电(SDR)的硬件平台,基于开源的srsRAN软件平台,构建实现终端接入互联网的4G通信链路。首先,研究了基于RE算法的系统峰值率,分析了峰值率的影响因素;其次,分别采用天线和同轴电缆两种传输方式测量4G链路的上行和下行峰值速率。经过对比分析,可以得出同轴电缆的传输方式更稳定,信噪比(SNR)更好。同时验证了CPU性能对上下行峰值速率的影响,通过调整RF (Radio Frequency)增益可以实现最大吞吐量,这也符合峰值速率的理论值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and performance study of 4G communication system based on srsRAN
In order to realize the flexible construction and performance test of 4G communication system, in this paper, using the GPP (General Purpose Processor) and USRP as the hardware platform of Software Defined Radio (SDR), based on the open source srsRAN software platform, the 4G communication link is built which realizes UE accessing the Internet. Firstly, the peak rate of the system based on the RE algorithm is studied, and the influencing factors of the peak rate are analyzed. Secondly, the uplink and downlink peak rate of the 4G link is measured by the two transmission modes of antenna and coaxial cable respectively. After comparative analysis, it can be concluded that the transmission mode of coaxial cable is more stable and the SNR (Signal to Noise Ratio) is better. At the same time, it verifies that CPU performance affects uplink and downlink peak rates, and that adjusting the RF (Radio Frequency) gain can achieve the maximum throughput which is also consistent with the theoretical value of peak rates.
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