基带信号压缩的自适应位截断与恢复

Junghoon Oh, Gweondo Jo, Bonghyuk Park
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引用次数: 2

摘要

分布式基站架构是降低蜂窝移动通信系统复杂性、提高系统管理效率的良好解决方案之一。典型的分布式基站由基带单元(BBUs)和远程无线电头(RRHs)组成。rrh与BBU分开部署,一般通过光纤与BBU连接。基带信号压缩是降低BBU和RRHs之间光纤链路数据速率的有效方法。本文提出了一种压缩和解压缩方案。它根据块中的最大绝对值截断最低有效位,从而分别对I和Q数据进行有损压缩。该方法利用所提出的填充位来抑制信号中的直流分量,并通过压缩和解压缩来缓解信噪比的下降。仿真结果表明,该方案具有较好的误差矢量量级性能和较低的时延。它使实现具有成本效益,因为它不需要任何乘法累加操作。该方案需要简单的位运算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive bit truncation and restoration for baseband signal compression
The distributed base station architecture is one of the good solutions to reduce the system complexity and manage the cellular mobile communication system more efficiently. Typical distributed base stations consist of base band units (BBUs) and remote radio heads (RRHs). RRHs are deployed apart from BBU and connected to it generally through a fiber optic cable. Compression of baseband signal is an efficient way to decrease the data rates on the fiber link between BBU and RRHs. This paper presents a compression and decompression scheme. It truncates least significant bits according to the largest absolute value in a block, thereby achieves lossy compression at each of I and Q data, respectively. It restores the signal by using proposed stuffing bits to suppress DC component in the signal and relieve signal to noise ratio degradation by compression and decompression. The simulation results suggest that the proposed scheme provides promising performance of error vector magnitude with low latency. It enables cost effective implementation since it does not require any multiply accumulate operation. Simple bit operations are needed in proposed scheme.
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