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Baseband signal compression in wireless base stations

机译:无线基站中的基带信号压缩

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摘要

To comply with the evolving wireless standards, base stations must provide greater data rates over the serial data link between base station processor and RF unit. This link is especially important in distributed antenna systems and cooperating base stations settings. This paper explores the compression of baseband signal samples prior to transfer over the above-mentioned link. We study lossy and lossless compression of baseband signals and analyze the cost and gain of each approach. Sample quantizing is proposed as a lossy compression scheme and it is shown to be effective by experiments. With QPSK modulation, sample quantizing achieves a compression ratio of 4:1 and 3.5:1 in downlink and uplink, respectively. The corresponding compression ratios are 2.3:1 and 2:1 for 16-QAM. In addition, lossless compression algorithms including arithmetic coding, Elias-gamma coding, and unused significant bit removal, and also a recently proposed baseband signal compression scheme are evaluated. The best compression ratio achieved for lossless compression is 1.5∶1 in downlink. Our simulations and over-the-air experiments suggest that compression of baseband signal samples is a feasible and promising solution for increasing the effective bit rates of the link to/from remote RF units without requiring much complexity and cost to the base station.
机译:为了符合不断发展的无线标准,基站必须通过基站处理器与RF单元之间的串行数据链路提供更高的数据速率。在分布式天线系统和协作基站设置中,此链接尤其重要。本文探讨了在上述链路上传输之前对基带信号样本的压缩。我们研究基带信号的有损和无损压缩,并分析每种方法的成本和收益。提出将样本量化作为有损压缩方案,并通过实验证明它是有效的。通过QPSK调制,样本量化在下行链路和上行链路中分别实现4:1和3.5:1的压缩率。 16-QAM的相应压缩比为2.3:1和2:1。另外,评估了包括算术编码,Elias-γ编码和未使用的有效位去除的无损压缩算法,以及最近提出的基带信号压缩方案。无损压缩的最佳压缩比在下行链路中为1.5∶1。我们的仿真和无线实验表明,对基带信号样本进行压缩是一种可行的且有前途的解决方案,用于提高往返于远程RF单元的链路的有效比特率,而无需基站的太多复杂性和成本。

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