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Minimizing Wireless Delay with a High-Throughput Side Channel

机译:用高吞吐侧通道最小化无线延迟

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摘要

Performance of modern cognitive and interactive mobile applications highly depends on the transmission delay in the wireless link that is vital to supporting real-time wireless traffic. To eliminate wireless network congestion caused by large amounts of concurrent network traffic and minimize such transmission delay, traditional schemes adopt various flow control and QoS-aware traffic scheduling techniques, but fail when the amount of network traffic further increases. In this paper, we present a novel design of high-throughput wireless side channel, which operates concurrently with the existing wireless network channel over the same spectrum but dedicates to real-time traffic. Our key idea of realizing such a side channel is to exploit the excessive SNR margin in the wireless network to encode data as patterned interference. We design such patterned interference in the form of energy erasure over specific subcarriers in an OFDM-based wireless network, and achieve a data rate of 1.25 Mbps in the side channel without affecting the existing wireless network links. Experimental results over both software-defined radios and custom wireless hardware demonstrate the effectiveness of our side channel design in reducing the latency of real-time wireless traffic, while providing a sufficient data throughput for such traffic.
机译:现代认知和交互式移动应用的性能高度取决于对支持实时无线流量至关重要的无线链路中的传输延迟。为了消除由大量的并发网络流量引起的无线网络拥塞并最大限度地减少这种传输延迟,传统方案采用各种流量控制和QoS感知流量调度技术,但是当网络流量的量进一步增加时失败。在本文中,我们提出了一种新颖的高吞吐量无线侧通道设计,其在相同的频谱上与现有的无线网络信道同时操作,但致力于实时流量。我们实现这种侧频道的关键思想是利用无线网络中的过度SNR裕度来编码数据作为图案化干扰。我们在基于OFDM的无线网络中的特定子载波上的能量擦除形式设计这种图案化干扰,并在不影响现有的无线网络链路的情况下在侧通道中实现1.25 Mbps的数据速率。对软件定义的无线电和定制无线硬件的实验结果证明了我们的侧通道设计在降低实时无线流量的延迟时的有效性,同时为这种业务提供了足够的数据吞吐量。

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