首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A 1.25 μJ per Measurement Ultrasound Rangefinder System in 65 nm CMOS for Explorations With a Swarm of Sensor Nodes
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A 1.25 μJ per Measurement Ultrasound Rangefinder System in 65 nm CMOS for Explorations With a Swarm of Sensor Nodes

机译:每次测量超声测距仪系统中为1.25μJ,用于65 nm CMOS,用于浏览传感器节点的探索

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This paper presents an ultrasound rangefinder system able to find relative distances among energy-constrained sensor nodes. The nodes build a swarm that is operated in collision and multipath rich environments. A new distance measurement technique combining Wake-up and Frequency Modulated Continuous Wave (FMCW) is proposed to enable the ranging while neglecting the echoes from passive reflectors in the environment. The building blocks of the sensor nodes comprise a transmitter, a wake-up receiver, and a ranging receiver, all implemented in a 65 nm CMOS technology. The transmitter includes two switched-capacitor converters and an output multiplexer to generate a four-level driving signal and broadcast either a wake-up sequence or a digitally synthesized ultrasound Chirp. The transmitter dissipates 0.43 mu J and 0.82 mu J to broadcast the wake-up signal and the Chirp, respectively. A mixer first architecture is exploited in the wake-up receiver to reduce the always-on power consumption of the nodes. The ranging receiver uses a heterodyne architecture suited for the FMCW. The power consumption of the wake-up receiver and ranging receiver is 23.6 nW and 0.56 mu W, respectively. The proposed rangefinder is experimentally characterized up to a 1 m distance in air and dissipates 1.25 mu J per measurement, achieving a resolution of 18.7 mm at 0.55 m.
机译:本文介绍了一个超声测距仪系统,能够在能量受限传感器节点之间找到相对距离。节点构建了一个在碰撞和多径丰富的环境中运行的群。提出了一种组合唤醒和频率调制连续波(FMCW)的新距离测量技术,以使测距忽略环境中的无源反射器的回波。传感器节点的构建块包括发送器,唤醒接收器和测距接收器,全部以65nm CMOS技术实现。发射机包括两个开关电容转换器和输出多路复用器,以产生四电平的驱动信号并广播唤醒序列或数字合成的超声啁啾。发射器分别消散0.43μJ和0.82μm以分别广播唤醒信号和啁啾。在唤醒接收器中利用混频器第一架构,以减少节点的始终开启功耗。测距仪使用适合FMCW的外差架构。唤醒接收器和测距仪的功耗分别为23.6 nW和0.56μW。所提出的测距仪在实验中的特征在于空气中的距离高达1米,每次测量耗散1.25μJ,达到0.55米的分辨率为18.7毫米。

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