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On the design and implementation of FIR and IIR digital filters with variable frequency characteristics

机译:关于具有可变频率特性的FIR和IIR数字滤波器的设计和实现

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摘要

This paper studies the design and implementation of FIR and IIR VDF, whose frequency characteristics can be controlled continuously by some control or tuning parameters. A least squares (LS) approach is proposed to design FIR VDF with its impulse response expressed as a linear combination of basis functions. By choosing the basis functions as piecewise polynomials, VDF with larger tuning range than ordinary polynomial based approach results. This VDF can be efficiently implemented using the Farrow structure. Making use of the FIR VDF, an eigensystem realization algorithm (ERA)-based model reduction technique is proposed to obtain a stable IIR VDF with lower system order. It does not suffer from the undesirable transient response during parameter tuning. For frequency selective VDF, about 40% of the multiplications can be saved using the IIR VDF. The implementation of the proposed FIR VDF using SOPOT coefficient and the multiplier block technique is also studied. Results show that about two-third of the additions in implementing the SOPOT coefficients can be saved using the multiplier block.
机译:本文研究了FIR和IIR VDF的设计和实现,它们的频率特性可以通过一些控制或调谐参数来连续控制。提出了一种最小二乘(LS)方法来设计FIR VDF,其脉冲响应表示为基函数的线性组合。通过选择基函数作为分段多项式,可以得到比基于普通多项式的方法具有更大调整范围的VDF。使用Farrow结构可以有效地实现此VDF。利用FIR VDF,提出了一种基于特征系统实现算法(ERA)的模型简化技术,以得到较低系统阶数的稳定IIR VDF。在参数调整期间,它不会遭受不良的瞬态响应。对于频率选择性VDF,使用IIR VDF可以节省大约40%的乘法。还研究了使用SOPOT系数和乘法器块技术实现的FIR VDF的实现。结果表明,使用乘法器块可以节省实现SOPOT系数所需的三分之二。

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