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A Class of Wide-Band Linear-Phase FIR Differentiators Using a Two-Rate Approach and the Frequency-Response Masking Technique

机译:一类采用二速率方法和频率响应屏蔽技术的宽带线性相位FIR微分器

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This paper introduces a class of wide-band linear-phase finite-length impulse response (FIR) differentiators. It is based on two-rate and frequency-response masking techniques. It is shown how to use these techniques to obtain all four types of linear-phase FIR differentiators. Design examples demonstrate that differentiators in this class can achieve substantial savings in arithmetic complexity in comparison with conventional direct-form linear-phase FIR differentiators. The savings achievable depend on the bandwidth and increase with increasing bandwidth beyond the break-even points which are in the neighborhood of 90% (80%) of the whole bandwidth for Type II and III (Type I and IV) differentiators. The price to pay for the savings is a moderate increase in the delay and number of delay elements. Further, in terms of structural arithmetic operations, the proposed filters are comparable to filters based on piecewise-polynomial impulse responses. The advantage of the proposed filters is that they can be implemented using non-recursive structures as opposed to the polynomial-based filters which are implemented with recursive structures.
机译:本文介绍了一类宽带线性相位有限长脉冲响应(FIR)微分器。它基于双速率和频率响应屏蔽技术。展示了如何使用这些技术来获得所有四种类型的线性相位FIR微分器。设计实例证明,与传统的直接形式线性相位FIR微分器相比,该类微分器可在算术复杂度上实现大量节省。可实现的节省取决于带宽,并随着带宽的增加而增加,超出保本点(对于II型和III型(I和IV型)微分器,其带宽占整个带宽的90%(80%)左右。节省的代价是延迟和延迟元素数量的适度增加。此外,就结构算术运算而言,所提出的滤波器可与基于分段多项式脉冲响应的滤波器相媲美。所提出的滤波器的优点在于,与使用递归结构实现的基于多项式的滤波器相反,它们可以使用非递归结构实现。

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