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A Reconfigurable, 130 nm CMOS 108 pJ/pulse, Fully Integrated IR-UWB Receiver for Communication and Precise Ranging

机译:可重配置,130 nm CMOS 108 pJ /脉冲,完全集成的IR-UWB接收器,用于通信和精确测距

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This paper presents a fully integrated flexible ultra-low power UWB impulse radio receiver, capable of cm-accurate ranging. Ultra-low-power consumption is achieved by employing the quadrature analog correlating receiver architecture, by exploiting the duty-cycled nature of the system, by operating in the sub-1 GHz band as well as by careful circuit design. Two pulse rates, 39.0625 Mpulses per second (Mpps) and 19.531 Mpps, and a wide range of processing gains (0-18 dB) are supported. Also, the acquisition algorithm and accuracy can be adapted at run time. This flexible implementation allows to dynamically trade power consumption for performance depending on the operating conditions and the application requirements. The receiver prototype was manufactured in 130 nm CMOS and the active circuit area measures 4.52 mm2. The IC contains a complete analog front-end, digital backend and implements the algorithms necessary for acquisition, synchronization, data reception and ranging. Consuming 4.2 mW when operating at 39.0625 Mpps, it achieves an energy efficiency of 108 pJ/pulse. A 1.3 Mb/s wireless link over more than 10 m in an office-like environment has been demonstrated under direct line-of-sight (LOS) conditions with a raw packet-error-rate (PER) less than 10% and cm-accurate ranging.
机译:本文提出了一种完全集成的,灵活的超低功率UWB脉冲无线电接收器,能够进行厘米级精确的测距。通过采用正交模拟相关接收器体系结构,利用系统的占空比特性,在1 GHz以下频段工作以及精心的电路设计,可以实现超低功耗。支持两种脉冲率,分别为39.0625 Mpulss /秒(Mpps)和19.531 Mpps,并具有广泛的处理增益(0-18 dB)。同样,可以在运行时调整采集算法和准确性。这种灵活的实现方式允许根据工作条件和应用要求动态地将功耗与性能进行权衡。接收器原型采用130 nm CMOS制造,有源电路面积为4.52 mm2。该IC包含完整的模拟前端,数字后端,并实现了采集,同步,数据接收和测距所需的算法。当以39.0625 Mpps的速度运行时,功耗为4.2 mW,可实现108 pJ /脉冲的能量效率。在直接视线(LOS)条件下,原始数据包错误率(PER)小于10%,而cm-准确的测距。

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