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Design and FPGA implementation of lattice wave digital notch filter with minimal transient duration

机译:晶格波数字陷波过滤器的设计与FPGA实现,具有最小的瞬态持续时间

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In this study, the design and field-programmable gate array (FPGA) implementation of the digital notch filter with the lattice wave digital filter (LWDF) structure is presented. For reducing the initial signal transient, the variable notch bandwidth filter is designed. During the initial samples, the notch filter has a wide bandwidth in order to diminish signal transient. As time moves forward, the notch bandwidth reduces to attain the possible minimum width. This results in minimised transient duration notch filter with a sufficiently high-quality factor. Previously, the IIR structure has been used for implementing the time varying bandwidth notch filter. Such a filter requires two variable coefficients for varying the notch width with time. The advantage of using a LWDF structure is that only one coefficient has variable values to vary the notch width with time. Therefore, the number of memory locations required to implement the proposed design is reduced by half. Moreover, the LWDF is less sensitive to the word-length effects. Thus, the proposed lattice wave digital notch filter (LWDNF) produces better results compared to the existing literature in terms of error analysis. The suggested LWDNF is then implemented on a field-programmable gate array using a Xilinx system generator for the DSP design suite.
机译:在本研究中,呈现了具有晶格波数字滤波器(LWDF)结构的数字陷波滤波器的设计和现场可编程门阵列(FPGA)实现。为了减少初始信号瞬态,设计了变量陷波带宽滤波器。在初始样本期间,凹口滤波器具有宽带宽,以便减少信号瞬态。随着时间向前移动,凹口带宽减少以获得可能的最小宽度。这导致具有足够高的因子的最小瞬态持续时间缺口滤波器。以前,IIR结构已被用于实现时间变化的带宽缺口滤波器。这种滤波器需要两个可变系数以随着时间改变凹口宽度。使用LWDF结构的优点是,只有一个系数具有可变值,可以随时间改变凹口宽度。因此,实现所提出的设计所需的存储器位置的数量减少了一半。此外,LWDF对单词长度效应不太敏感。因此,在误差分析方面,所提出的格波数字陷波滤波器(LWDNF)与现有文献相比产生了更好的结果。然后,使用用于DSP设计套件的Xilinx系统生成器,在现场可编程门阵列上实现建议的LWDNF。

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