Design of FIR Filter With Several Window Functions

Author(s):  
Yanjie Xu
Keyword(s):  
2012 ◽  
Vol 3 (2) ◽  
pp. 329-334
Author(s):  
Susheel Kumar ◽  
Munish Verma ◽  
Vijay K. Lamba ◽  
Avinash Kumar ◽  
Sandeep Kumar

Filters are very commonly found in everyday life and include examples such as water filters for water purification, mosquito nets that filter out bugs, bouncers at bars filtering the incoming guests according to age (and other criteria), and air filters found in air conditioners that we are sometimes a bit too lazy to change/clean periodically. Filters have two uses: signal separation and signal restoration. Signal separation is needed when a signal has been contaminated with interference, noise, or other signals. For example, imagine a device for measuring the electrical activity of a baby's heart (EKG) while still in the womb. The raw signal will likely be corrupted by the breathing and heartbeat of the mother. A filter might be used to separate these signals so that they can be individually analyzed. Signal restoration is used when a signal has been distorted in some way. For example, an audio recording made with poor equipment may be filtered to better represent the sound as it actually occurred [1, 2]. The main goal of this work is to study the exponential  window function and analyze a digital low pass FIR filter using the same in MATLAB. Properties of window functions is studied and frequeny domain responses of  window functions is obtained. Then FIR filter is designed using widow design method and its characteristics have also been studied in frequency domain. The performace comparison between LPFs designed using other well known windows like Kaiser, Exponential, Cosh and modified kaiser window is done and it has been intuitively shown that for a given order and transition width, the filter designed using Exponential window provides the worse minimum stop band attenuation but better far end attenuation than filter designed by well known Kaiser Window.


2019 ◽  
Vol 8 (4) ◽  
pp. 6022-6024

A crucial part of the digital system is the FIR filter where its framework is robust and simple to connect. In this paper, a regular FIR filter and an optimized FIR filter were modeled using window functions. The FIR filter was designed and contrived by FPGA for digital signal filtering. Also in this paper, a regular FIR filter and an optimized FIR filter were built with window usability. The main characteristic of the application is the Xillinx ISE development suite program to build the FPGA data filter accelerator. The paper also simulates the hardware and software co-designed FIR filter and provides simulation findings about hardware assets and variations in quality compared to the standard and improved FIR filter


2013 ◽  
Vol 8 (3) ◽  
pp. 902-907 ◽  
Author(s):  
Shruti Jain ◽  
Mr.Dinesh Kumar Verma

In this study, 2-parameter cosh window is modified to improve its spectral characteristic in terms of the ripple ratio by proposing a new additional parameter. It is observed that an increase in the new parameter results in wider mainlobe width and smaller ripple ratio. By choosing the suitable combinations of the two adjustable parameters for the proposed modified window, the optimum windows that yield the minimum ripple ratio for N=51 and N=101 are .found. Simulation results show that the filters designed by proposed 3-parameter Cosh window provide higher quality in terms of the minimum stop-band attenuation for a fixed order, and yield lower order for a fix minimum stop-band attenuation compared to the filters designed by other windows.


2012 ◽  
Vol 3 (2) ◽  
pp. 324-328
Author(s):  
Avinash Mehta ◽  
Munish Verma ◽  
Vijay K. Lamba ◽  
Susheel Kumar ◽  
Sandeep Kumar

Filters are used in electronic circuits to remove the unwanted frequency components from desired signals. A digital filter basically provide high attenuation to the unwanted ones and offer very low or ideally zero attenuation to desired signal components when it’s impulse response is adjusted as per requirement. For ideal filters, the length of such an impulse response is infinite and also the filter will be non-causal and unrealizable. So, we need to truncate this infinite impulse response to make it finite. For this truncation, we use window functions. Using window functions, we obtain a finite impulse response or simply FIR filter. The shape of a window in time domain decides the characteristics of resultant filter in frequency domain. Several window functions are available in literature. For the present work we have choosen the three parameter Cosh window for truncation of infinite impulse response. It is also called as modified Cosh window because it has been obtained by  inserting a third parameter in the basic 2-parameter Cosh window function. The main goal of this work is to study this modified Cosh window and design a digital low pass FIR filter using the same in MATLAB. First of all the properties of window function are described and frequeny domain responses of  window function is obtained. Then FIR filter is analyzed using window design method and it’s characteristics have also been studied in frequency domain.


2014 ◽  
Vol 2 (3) ◽  
pp. 9-13
Author(s):  
P.V. Muralidhar ◽  
◽  
S.K. Nayak ◽  
Keyword(s):  

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