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Reconfigurable biological signal co-processor for feature extraction dedicated to implantable biomedical microsystems

机译:可重构生物信号协处理器,用于可植入生物医学微系统的特征提取

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This paper reports the design of a fully reconfigurable biological signal co-processor, designed to enhance processing capabilities of a generic controller proposed by the authors. The co-processor is capable of performing feature extraction on 32 channels in both time and mathematical transform domains. In the time domain, level crossings and local maxima and minima are the features the co-processor is capable of recognizing. In the transform domain, the discrete wavelet transform (DWT) is calculated using a reconfigurable DWT core. Designed and simulated in a 180-nm standard CMOS process, the co-processor dissipates a maximum power of 427 μW when calculating the DWT coefficients with 2 levels for the Daubechies3 basis function.
机译:本文报告了一种完全可重构的生物信号协处理器的设计,旨在增强作者提出的通用控制器的处理能力。协处理器能够在时域和数学变换域中的32个通道上执行特征提取。在时域中,平交道口和局部最大值和最小值是协处理器能够识别的特征。在变换域中,使用可重构DWT核计算离散小波变换(DWT)。在180 nm标准CMOS工艺中进行设计和仿真,当为Daubechies3基函数计算2级DWT系数时,协处理器的最大功耗为427μW。

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