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Seamless Rate Adaptation for Wireless Networking

机译:无线网络的无缝速率适配

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This paper aims at designing a Seamless Rate Adaptation for wireless networking which achieves smooth rate adjustment in a broad dynamic range of channel conditions. Conventional rate adaptation can only achieve a stair-case rate adjustment. Even when combining with hybrid ARQ, it suffers from an irreconcilable conflict between throughput and dynamic range. We tackle this problem from a new perspective by relying on modulation, instead of channel coding, for rate adaptation. We propose rate compatible modulation (RCM), in which modulation signals are incrementally generated from information bits through weighted mapping. Rate adaptation is achieved through varying the number of modulated signals. As more signals are transmitted, information bits gradually accumulate energy. The weights in bit-to-symbol mapping are delicately designed to ensure fine-grained energy accumulation so that smoothness and efficiency can both be achieved. We design and implement a rate adaptation system, called SRA and evaluate its performance through a software radio test bed. Results show that, under highly dynamic channel conditions, SRA achieves over 80% throughput gain over 802.11a adaptive modulation and coding, and achieves 28.8% and 43.8% gain over HARQ systems implemented with Turbo code and Raptor code. We believe that the concept of rate compatible modulation opens up a fresh research avenue toward the wireless rate adaptation problem.
机译:本文旨在设计一种用于无线网络的无缝速率适配,它可以在广泛的信道条件动态范围内实现平滑的速率调整。传统的速率调整只能实现阶梯速率调整。即使与混合ARQ结合使用,它也遭受吞吐量和动态范围之间不可调节的冲突。我们通过依靠调制而不是信道编码来进行速率自适应,从一个新的角度解决了这个问题。我们提出了速率兼容调制(RCM),其中调制信号是通过加权映射从信息位递增生成的。通过改变调制信号的数量来实现速率适配。随着更多信号的传输,信息位逐渐积累能量。位到符号映射中的权重经过精心设计,以确保细粒度的能量积累,从而既可以实现平滑度又可以实现效率。我们设计并实现了一种称为SRA的速率自适应系统,并通过软件无线电测试台评估其性能。结果表明,在高度动态的信道条件下,SRA与802.11a自适应调制和编码相比,可实现80%以上的吞吐率增益,与采用Turbo码和Raptor码实现的HARQ系统相比,可实现28.8%和43.8%的增益。我们相信速率兼容调制的概念为无线速率自适应问题开辟了新的研究途径。

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