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首页> 外文期刊>IEEE Transactions on Signal Processing >Lagrange multiplier approaches to the design of two-channel perfect-reconstruction linear-phase FIR filter banks
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Lagrange multiplier approaches to the design of two-channel perfect-reconstruction linear-phase FIR filter banks

机译:拉格朗日乘数法设计两通道完美重构线性相位FIR滤波器组

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The authors present two approaches to the design of two-channel perfect-reconstruction linear-phase finite-impulse-response (FIR) filter banks. Both approaches analyze and design the impulse responses of the analysis filter bank directly. The synthesis filter bank is then obtained by simply changing the signs of odd-order coefficients in the analysis filter bank. The approach deals with unequal-length filter banks. By designing the lower length filters first, one can take advantage of the fact that the number of variables for designing the higher length filters is more than the number of perfect-reconstruction constraint equations. The second approach generalizes the first, and covers the design for all parts of linear phase perfect reconstruction constraint equations.
机译:作者提出了两种设计两通道完美重构线性相位有限冲激响应(FIR)滤波器组的方法。两种方法都直接分析和设计分析滤波器组的脉冲响应。然后,通过简单地改变分析滤波器组中的奇数阶系数的符号就可以获得合成滤波器组。该方法处理不等长的滤波器组。通过首先设计较低长度的滤波器,可以利用以下事实:用于设计较高长度的滤波器的变量数量大于完全重构约束方程的数量。第二种方法推广了第一种方法,并涵盖了线性相位完美重构约束方程所有部分的设计。

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