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Analog VLSI implementation of wavelet transform using switched-current circuits

机译:使用开关电流电路的小波变换的模拟VLSI实现

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For applications requiring low-voltage low-power and real-time processing, a novel scheme for the VLSI implementation of wavelet transform (WT) using switched-current (SI) circuits is presented. SI circuits are well suited for these applications since the dilation constant across different scales of the transform can be implemented, and controlled by both the aspect-ratio of the transistors and the clock frequency. The quality of such implementation depends on the accuracy of the corresponding wavelet approximation. First, an optimized procedure based on differential evolution algorithm (DE) is applied to approximate the transfer function of a linear steady-state system whose impulse response is the required wavelet. The proposed approach significantly improves the accuracy of approximation wavelets. Next, the approximation of time-domain wavelet function is implemented by the SI analog filters. Finally, the design of the complete SI filter based on first-order and biquad section as main building block is detailed. Simulations demonstrate the performance of the proposed approach to analog WT implementation.
机译:对于需要低压低功耗和实时处理的应用,提出了一种使用开关电流(SI)电路的VLSI实现小波变换(WT)的新颖方案。 SI电路非常适合这些应用,因为可以实现跨变换的不同比例的膨胀常数,并由晶体管的纵横比和时钟频率来控制它们。这种实现方式的质量取决于相应的小波逼近的准确性。首先,基于微分进化算法(DE)的优化程序被应用于近似线性稳态系统的传递函数,该系统的脉冲响应是所需的小波。所提出的方法显着提高了近似小波的精度。接下来,通过SI模拟滤波器来实现时域小波函数的近似。最后,详细介绍了基于一阶和二阶二阶截面作为主要构建模块的完整SI滤波器的设计。仿真证明了所提出的模拟WT实现方法的性能。

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