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A Fully Passive Compressive Sensing SAR ADC for Low-Power Wireless Sensors

机译:用于低功率无线传感器的全被动式压缩传感SAR ADC

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The compressive sensing (CS) theory states that the sparsity of a signal can be exploited to reduce the analog-to-digital converter (ADC) conversion rate and save power. However, most previous CS frameworks require dedicated analog CS encoders built by power-hungry active amplifiers, which limit the overall power saving. Differently, this paper proposes a fully passive switched-capacitor-based CS framework that directly embeds CS into a successive-approximation-register (SAR) ADC. The proposed CS-SAR ADC can operate in two modes: the Nyquist mode and the CS mode. In the CS mode, the CS-SAR ADC quantizes the input once every four-time sampling, reducing the conversion rate and the circuit power by four times compared to the Nyquist mode. A prototype chip is fabricated in a 0.13- μm CMOS process. At 0.8 V and 1 MS/s, the chip consumes 19.2 μW in the Nyquist mode and 5μW in the CS mode. Discrete-tone signals are converted and reconstructed with a peak signal-to-noise plus distortion ratio (SNDR) of 61 dB and maximum bandwidth occupancy of 8.2%. Speech signals are also used to demonstrate the capability of the chip to compressively sense real-world signals. Compared to prior CS works, it improves the post-reconstruction SNDR by 18 dB and the energy efficiency by 13 times.
机译:压缩感测(CS)理论指出,可以利用信号的稀疏性来降低模数转换器(ADC)的转换速率并节省功耗。但是,大多数以前的CS框架都需要耗电的有源放大器构建的专用模拟CS编码器,这限制了整体功耗。与此不同,本文提出了一种完全基于无源开关电容器的CS框架,该框架直接将CS嵌入到逐次逼近寄存器(SAR)ADC中。提出的CS-SAR ADC可以在两种模式下运行:奈奎斯特模式和CS模式。在CS模式下,CS-SAR ADC每四次采样对输入进行一次量化,与奈奎斯特模式相比,转换速率和电路功率降低了四倍。原型芯片采用0.13-μmCMOS工艺制造。在0.8 V和1 MS / s的速度下,该芯片在Nyquist模式下的功耗为19.2μW,在CS模式下的功耗为5μW。离散音信号经过转换和重构,峰值信噪比和失真比(SNDR)为61 dB,最大带宽占用率为8.2%。语音信号还用于演示芯片压缩感知现实信号的能力。与以前的CS工程相比,它可以将重建后的SNDR提高18 dB,将能源效率提高13倍。

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