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SPIRO: Turning elephants into mice with efficient RF transport

机译:SPIRO:通过有效的射频传输将大象变成老鼠

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Cloud-RANs (Radio Access Networks) assume the existence of a high-capacity, low-delay/latency fronthaul to support cooperative transmission schemes such as CoMP (Coordinated Multi-Point) and coordinated beamforming. However, building such hierarchical wired fronthauls is challenging as the typical I/Q data stream is non-elastic - I/Q data over the wired fronthaul has little tolerance for delay jitters and zero tolerance for losses. Any distortion to the I/Q data stream will make the resulting wireless transmission completely unintelligible. We propose Spiro, a mechanism that efficiently transports RF signals over a wired fronthaul network. The primary goal of Spiro is to make I/Q data streams elastic and resilient to unexpected network condition changes. This is accomplished through a novel combination of compression and data prioritization of I/Q data on the wired fronthaul. For a given wireless throughput, Spiro can reduce the bandwidth demand of the fronthaul data stream by up to 50% without any noticeable degradation in the wireless reception quality. Further bandwidth reduction via compression and frame losses only have a limited impact on the wireless throughput.
机译:Cloud-RAN(无线电接入网络)假设存在高容量,低延迟/延迟的前传,以支持诸如CoMP(协作多点)和协作波束成形之类的协作传输方案。但是,由于典型的I / Q数据流是非弹性的,因此构建这样的分层有线前传具有挑战性-有线前传上的I / Q数据对延迟抖动的容忍度很小,而对损失的容忍度为零。 I / Q数据流的任何失真都将使最终的无线传输变得完全难以理解。我们提出了Spiro,一种可以在有线前传网络上有效传输RF信号的机制。 Spiro的主要目标是使I / Q数据流具有弹性和弹性,以应对意外的网络状况变化。这是通过将有线前传上I / Q数据的压缩和数据优先级的新颖组合来实现的。对于给定的无线吞吐量,Spiro可以将前传数据流的带宽需求降低多达50%,而不会显着降低无线接收质量。通过压缩和帧丢失进一步减少带宽只会对无线吞吐量产生有限的影响。

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