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On Integration and Validation of a Very Low Complexity ATC UWB System for Muscle Force Transmission

机译:极低复杂度肌肉力量传递ATC UWB系统的集成与验证

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The thresholding of Surface ElectroMyoGraphic (sEMG) signals, i.e., Average Threshold Crossing (ATC) technique, reduces the amount of data to be processed enabling circuit complexity reduction and low power consumption. This paper investigates the lowest level of complexity reachable by an ATC system through measurements and in-vivo experiments with an embedded prototype for wireless force transmission, based on asynchronous Impulse-Radio Ultra Wide Band (IR-UWB). The prototype is composed by the acquisition unit, a wearable PCB 2334 mm, which includes a full custom IC integrating a UWB transmitter (chip active silicon area 0.016 mm, 1 mW power consumption), and the receiver. The system is completely asynchronous, it acquires a differential sEMG signal, generates the ATC events and triggers a 3.3 GHz IR-UWB transmission. ATC robustness relaxes filters constraints: two passive first order filters have been implemented, bandwidth from 10 Hz up to 1 kHz . Energy needed for the single pulse generation is 30 pJ while the whole PCB consumes 5.65 mW. The pulses radiated by the acquisition unit TX are received by a short-range and low complexity threshold-based 130 nm CMOS IR-UWB receiver with an Ultra Low Power (ULP) baseband unit capable of robustly receiving generic quasi-digital pulse sequences. The acquisition unit have been tested with 10 series of in vivo isometric and isotonic contractions, while the transmission channel with over-the-air and cable measurements obtained with a couple of planar monopole antennas and an integrated 0.004 mm transmitter, the same used for the acquisition unit, with realistic channel conditions. The entire system, acquisition unit and receiver, consumes 15.49 mW.
机译:表面肌电图(sEMG)信号的阈值化(即平均阈值交叉(ATC)技术)减少了要处理的数据量,从而降低了电路复杂性并降低了功耗。本文通过基于异步脉冲无线超宽带(IR-UWB)的无线力传输嵌入式原型,通过测量和体内实验,研究了ATC系统可达到的最低复杂度。该原型机由采集单元,一块2334 mm的可穿戴PCB组成,该PCB包括一个完整的定制IC,集成了UWB发射器(芯片有源硅面积为0.016 mm,功耗为1 mW)和接收器。该系统是完全异步的,它获取差分sEMG信号,生成ATC事件并触发3.3 GHz IR-UWB传输。 ATC的鲁棒性放松了滤波器的限制:已经实现了两个无源一阶滤波器,带宽从10 Hz到1 kHz。单脉冲产生所需的能量为30 pJ,而整个PCB的功耗为5.65 mW。捕获单元TX辐射的脉冲由具有超低功耗(ULP)基带单元的基于短距离和低复杂度阈值的130 nm CMOS IR-UWB接收器接收,该接收器能够牢固地接收通用的准数字脉冲序列。采集单元已经过10种体内等距和等渗收缩的测试,而传输通道通过一对平面单极天线和集成的0.004 mm发射器获得了空中和电缆测量结果,用于采集单元,具有实际的通道条件。整个系统(采集单元和接收器)的功耗为15.49 mW。

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