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Non-coherent detection of M-ary orthogonal signals using Compressive Sensing

机译:使用压缩感测对M元正交信号进行非相干检测

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Energy-efficient wireless communications are key enablers for the development of smart objects. New architectures with very low-power profile have to be investigated for targeting advanced implementations. In this context, the paper proposes to employ the Compressive Sensing theory for the detection of M-ary orthogonal signals, without complete recovery. This allows to lower the digital baseband computation load for almost equivalent performance. Simulations based on the IEEE 802.15.4 standard shows that the BER matches the theoretical results with a tolerable loss, depending mostly on the compression rate. Then, numerical analysis brings out some practical limitations that have to be considered when using this technique. Finally, the paper underlines the innovative use of compressive sensing for reducing the computation load during detection. This flexibility enables the selection of the most efficient operating point.
机译:节能无线通信是开发智能对象的关键推动力。必须针对功耗极低的新架构进行研究,以针对高级实现。在这种情况下,本文建议采用压缩感测理论来检测Mary正交信号,而无需完全恢复。这样可以降低数字基带计算负载,从而获得几乎相同的性能。基于IEEE 802.15.4标准的仿真表明,BER与理论结果相匹配,且可承受的损耗主要取决于压缩率。然后,数值分析提出了使用此技术时必须考虑的一些实际限制。最后,本文强调了压缩感测在减少检测过程中的计算负荷方面的创新应用。这种灵活性使得可以选择最有效的工作点。

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