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A Cross-Layer Adaptive Modulation and Coding Scheme for Energy Efficient Software Defined Radio

机译:节能软件定义无线电的跨层自适应调制和编码方案

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In this paper, a simple and novel cross-layer adaptive modulation and coding (AMC) scheme, which increases the energy efficiency of the wireless communication system is proposed. Traditionally, AMC has been used to improve MAC-layer performance in terms of coded bit error rate, packet error rate, and throughput. The modulation and coding scheme is switched according to signal-to-noise ratio thresholds at the PHY layer. We extend the approach, proposing a framework for energy-efficient cross-layer AMC that captures the impact of both MAC layer and PHY layer parameters on the AMC switching criteria. Cross-layer designs are naturally suited to software defined radio applications. Not only are they readily implemented in software, but also they are integral to the radio components. They can optimize performance of the radio either for a given configuration or adaptively. Through examples of WLAN physical layer and Frequency Domain Equalized systems, we demonstrate our AMC scheme and verify its effectiveness by simulation.
机译:本文提出了一种简单新颖的跨层自适应调制和编码(AMC)方案,该方案提高了无线通信系统的能效。传统上,AMC已用于在编码误码率,分组误码率和吞吐量方面提高MAC层性能。调制和编码方案根据PHY层的信噪比阈值进行切换。我们扩展了该方法,提出了一个节能跨层AMC框架,该框架捕获了MAC层和PHY层参数对AMC交换标准的影响。跨层设计自然适合于软件定义的无线电应用。它们不仅易于在软件中实现,而且与无线电组件集成在一起。他们可以针对给定的配置或自适应地优化无线电的性能。通过WLAN物理层和频域均衡系统的示例,我们演示了AMC方案并通过仿真验证了其有效性。

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