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Ultra-wide-band transmitter for low-power wireless body area networks: design and evaluation

机译:用于低功率无线人体局域网的超宽带发射机:设计和评估

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摘要

The successful realization of a wireless body area network (WBAN) requires innovative solutions to meet the energy consumption budget of the autonomous sensor nodes. The radio interface is a major challenge, since its power consumption must be reduced below 100 μW (energy scavenging limit). The emerging ultra-wide-band (UWB) technology shows strong advantages in reaching this target. First, most of the complexity of an UWB system is in the receiver, which is a perfect scenario in the WBAN context. Second, the very little hardware complexity of a UWB transmitter offers the potential for low-cost and highly integrated solutions. Finally, in a pulse-based UWB scheme, the transmitter can be duty-cycled at the pulse rate, thereby reducing the baseline power consumption. We present a low-power UWB transmitter that can be fully integrated in standard CMOS technology. Measured performances of a fully integrated pulse generator are provided, showing the potential of UWB for low power and low cost implementations. Finally, using a WBAN channel model, we present a comparison between our UWB solution and state-of-the-art low-power narrow-band implementations. This paper shows that UWB performs better in the short range due to a reduced baseline power consumption.
机译:无线体域网(WBAN)的成功实现需要创新的解决方案来满足自主传感器节点的能耗预算。无线接口是一个重大挑战,因为必须将其功耗降低到100μW(能量清除极限)以下。新兴的超宽带(UWB)技术在实现此目标方面显示出强大的优势。首先,UWB系统的大多数复杂性都在接收机中,这在WBAN上下文中是一个完美的方案。其次,UWB发射机的硬件复杂性极低,为低成本和高度集成的解决方案提供了潜力。最后,在基于脉冲的UWB方案中,可以以脉冲速率对发射机进行占空比,从而降低基线功耗。我们提出了一种可以完全集成在标准CMOS技术中的低功耗UWB发射机。提供了完全集成的脉冲发生器的测量性能,显示了UWB在低功耗和低成本实施中的潜力。最后,使用WBAN信道模型,我们在UWB解决方案和最新的低功率窄带实施方案之间进行了比较。本文表明,由于降低了基准功耗,UWB在短距离内的性能更好。

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