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Low-power high-accuracy compact implementation of analog wavelet transforms

机译:模拟小波变换的低功耗高精度紧凑型

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Implementing wavelet transform using analog circuits is of great interest when low power consumption and chip area become important issues. In this case, the complexity of circuits depends on the accuracy of the wavelet approximation. First, an optimized procedure based on a Hankel-norm model reduction is applied to approximate the transfer function of a linear steady- state system whose impulse response implements the required wavelet. The proposed approach significantly improves the accuracy of approximated wavelet. Next, the approximation result is implemented using a low- power low-voltage second order log domain filter as a design example in 0.18 mum CMOS technology. The implemented filter based on the presented method features compact chip area, improved linearity, and ultra low-power consumption. Moreover, it presents a tunable gain, which allows for filters bands configurability. Finally, the design of a complete log domain filter bank, based on the proposed second order filter as main building block is detailed. The filter bank implements a rational approximation of a Gaussian wavelet function following the presented approximation method.
机译:当低功耗和芯片面积成为重要问题时,使用模拟电路实现小波变换非常兴趣。在这种情况下,电路的复杂性取决于小波近似的精度。首先,应用基于Hankel-Norm模型减少的优化过程,以近似脉冲响应实现所需小波的线性稳态系统的传递函数。所提出的方法显着提高了近似小波的准确性。接下来,使用低功耗低压二阶日志域滤波器实现近似结果作为0.18毫米CMOS技术的设计示例。基于所提出的方法的实现过滤器具有紧凑的芯片面积,改进的线性度和超低功耗。此外,它提出了一种可调谐增益,其允许滤波器频带可配置性。最后,根据所提出的二阶滤波器作为主构建块的基于所提出的二阶滤波器的设计设计。滤波器组在呈现的近似方法之后实现高斯小波函数的合理近似。

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