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Computational load reduction by downsampling for energy-efficient digital baseband

机译:通过下采样降低计算负载,以实现节能数字基带

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With the expansion of Internet of Things (IoT) the design of highly-integrated radio transceivers is a challenging task. The major concern is the power consumption, which is generally non-optimal due to the fluctuation of the communication channel quality. In this paper, we propose the use of downsampling techniques for decreasing the computational load of the baseband signal processing. More precisely, the paper compares two mechanisms using the IEEE 802.15.4 PHY in the 2.45 GHz band. It demonstrates that the performances remain close to the theoretical bound, even if only partial codes are used for the decoding. According to these results, it shows the impact of such techniques on the power consumption, considering a codes correlator unit. Thereby, it highlights the ability of downsampling to be used as an actuator in an adaptive baseband architecture, while preserving a good level of performances.
机译:随着物联网(IoT)的扩展,高度集成的无线电收发器的设计已成为一项艰巨的任务。主要问题是功耗,由于通信信道质量的波动,功耗通常不是最佳的。在本文中,我们建议使用下采样技术来减少基带信号处理的计算负荷。更准确地说,本文比较了在2.45 GHz频带中使用IEEE 802.15.4 PHY的两种机制。它表明,即使仅使用部分代码进行解码,性能仍然接近理论界限。根据这些结果,考虑到代码相关器单元,它显示了此类技术对功耗的影响。因此,它突出了在保持良好性能水平的同时,将下采样用作自适应基带架构中的执行器的能力。

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