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Synthesis of Chebyshev-I filter using folding and retiming

机译:利用折叠和重定时合成Chebyshev-I滤波器

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In synthesizing Digital signal processing (DSP) architecture, maintaining low silicon area and high performance becomes an important factor which can be achieved by various optimization techniques. To achieve this, we employ two design optimization techniques: folding and retiming, which are applied to 3rd order Chebyshev I high pass digital filter to minimize the functional units (adders, multipliers) and to reduce the number of registers. Folding transformation is used to determine the control circuits in DSP architecture by executing multiple algorithm operation on a single functional unit. Retiming using register minimization is applied after folding, thereby reducing the numbers of multipliers and adders from 7 to 1 and 6 to 1, respectively, without affecting the input and output characteristics of the filter.
机译:在合成数字信号处理(DSP)架构时,保持低硅面积和高性能成为可以通过各种优化技术实现的重要因素。为此,我们采用了两种设计优化技术:折叠和重定时,将其应用于三阶Chebyshev I高通数字滤波器,以最小化功能单元(加法器,乘法器)并减少寄存器的数量。折叠转换用于通过在单个功能单元上执行多种算法操作来确定DSP架构中的控制电路。折叠后使用寄存器最小化进行重定时,从而将乘法器和加法器的数量分别从7减少到1和6减少到1,而不会影响滤波器的输入和输出特性。

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