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Title: a hybrid algorithm with artifact detection mechanism fir region filling after object
Page Link: a hybrid algorithm with artifact detection mechanism fir region filling after object -
Posted By: rajkumarlb
Created at: Sunday 24th of January 2010 10:53:10 PM
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i want code for this project ....etc

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Title: C PROGRAM TO IMPLEMENT FIR FILTER
Page Link: C PROGRAM TO IMPLEMENT FIR FILTER -
Posted By: seminar class
Created at: Friday 06th of May 2011 06:39:28 PM
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#include xyzcfg.h

#include dsk6713.h
#include dsk6713_aic23.h

float filter_Coeff ={0.000000,-0.001591,-0.002423,0.000000,0.005728,
0.011139,0.010502,-0.000000,-0.018003,-0.033416,-0.031505,0.000000,
0.063010,0.144802,0.220534,0.262448,0.220534,0.144802,0.063010,0.000000,
-0.031505,-0.033416,-0.018003,-0.000000,0.010502,0.011139,0.005728,
0.000000,-0.002423,-0.001591,0.000000 };

static short in_buffer;

DSK6713_AIC23_Config config = {\
0x0017, /* 0 DSK6713_AIC23_LEFTINVOL Leftline input channel volume */\ ....etc

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Title: ESTIMATION OF HYDRODYNAMIC COEFFICIENTS OF AN ROV USING FREE DECAY PENDULUM MOTION T
Page Link: ESTIMATION OF HYDRODYNAMIC COEFFICIENTS OF AN ROV USING FREE DECAY PENDULUM MOTION T -
Posted By: science projects buddy
Created at: Monday 03rd of January 2011 09:12:32 PM
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ESTIMATION OF HYDRODYNAMIC COEFFICIENTS OF AN ROV USING FREE DECAY PENDULUM MOTION TEST

SEMINAR REPORT
Submitted by
REJIN CHANDRAN.R
DEPARTMENT OF MECHANICAL ENGINEERING
COLLEGE OF ENGINEERING TRIVANDRUM
August 2010



ABSTRACT


A good dynamics model is essential and critical for the successful design
of navigation and control system of an underwater vehicle. However, it is
difficult to determine the hydro2dynamics forces, especially the added m ....etc

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Title: BGM-109 Tomahawk missile aerodynamic coefficients
Page Link: BGM-109 Tomahawk missile aerodynamic coefficients -
Posted By:
Created at: Tuesday 01st of March 2016 02:22:12 PM
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could you give me some website or page link to know the aerodynamic coefficients of some type of Tomahawk missile? The reason for this is i want to build a cruise missile model which need this coefficients. Thanks for you suggestion. ....etc

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Title: SPEAKER IDENTIFICATION USING MEL FREQUENCY CEPSTRAL COEFFICIENTS
Page Link: SPEAKER IDENTIFICATION USING MEL FREQUENCY CEPSTRAL COEFFICIENTS -
Posted By: seminar addict
Created at: Wednesday 01st of February 2012 07:11:52 PM
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SPEAKER IDENTIFICATION USING MEL FREQUENCY CEPSTRAL COEFFICIENTS


1. INTRODUCTION
Speech is one of the natural forms of
communication. Recent development has made it
possible to use this in the security system. In
speaker identification, the task is to use a speech
sample to select the identity of the person that
produced the speech from among a population of
speakers. In speaker verification, the task is to use a
speech sample to test whether a person ....etc

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Title: FIR FILTER DESIGN
Page Link: FIR FILTER DESIGN -
Posted By: seminar class
Created at: Friday 06th of May 2011 06:13:01 PM
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Procedure:-
1) Get the sampling frequency
2) Get the pass band frequency
3) Get the stop band frequency or transition width
4) Get the pass band ripple and stop band attenuation
5) Select the window suitable for the stop band attenuation
6) Calculate the order ,N, based on the Transition width
7) Find the N window coefficients
8) Find truncated impulse response of h
9) Verify the frequency response of h

MATLAB program for FIR filter
clear
clc
close all
% ENTER THE SAMPLING FREQUENCY
Fs = 8000;
%NORM ....etc

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Title: Mat Lab Program to Generate FIR Filter-Low Pass Coefficients
Page Link: Mat Lab Program to Generate FIR Filter-Low Pass Coefficients -
Posted By: seminar class
Created at: Friday 06th of May 2011 06:29:10 PM
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% FIR Low pass filters using rectangular, triangular and kaiser windows
% sampling rate – 8000
order = 50;
cf=; cf--> contains set of cut-off frequencies

% cutoff frequency – 500
b_rect1=fir1(order,cf(1),boxcar(51)); %Rectangular
b_tri1=fir1(order,cf(1),bartlett(51)); %Triangular
b_kai1=fir1(order,cf(1),kaiser(51,8)); %Kaisar

% cutoff frequency - 1000
b_rect2=fir1(order,cf(2),boxcar(51));
b_tri2=fir1(order,cf(2),bartlett(51));
b_kai2=fir1(order,cf(2) ....etc

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Title: FINITE IMPULSE RESPONSE FILTER FIR
Page Link: FINITE IMPULSE RESPONSE FILTER FIR -
Posted By: seminar class
Created at: Friday 06th of May 2011 06:27:44 PM
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DESIGNING A FIR FILTER:
Following are the steps to design linear phase FIR filters Using Windowing Method.

I. Clearly specify the filter specifications.
Eg: Order = 30;
Sampling Rate = 8000 samples/sec
Cut off Freq. = 400 Hz.

II. Compute the cut-off frequency Wc
Eg: Wc = 2*pie* fc / Fs
= 2*pie* 400/8000
= 0.1*pie

III. Compute the desired Impulse Response h d (n) using particular Window
Eg: b_rect1=fir1 (order, Wc , 'high',boxcar(31));

IV. Convolve input sequence with truncate ....etc

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Title: Design of Linear Phase FIR Filter Using Differential Evolution Optimization
Page Link: Design of Linear Phase FIR Filter Using Differential Evolution Optimization -
Posted By: seminar surveyer
Created at: Saturday 22nd of January 2011 06:33:45 PM
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K Rashmi Sekhar
K.Sravanthi
S.Sneha Deepthi



Abstract
Differential Evolution Algorithm is discussed. The design of a linear phase FIR Filter using DIFFERENTIAL EVOLUTION Algorithm is proposed. The frequency response of the designed LOW PASS FIR filter using Differential Evolution for different population and iterations are realized and compared. The best obtained filter can be used as a pulse-shaping filt ....etc

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Title: USING MATLAB TO DETERMINE FILTER COEFFICIENTS Using FIR1 Function on Matlab
Page Link: USING MATLAB TO DETERMINE FILTER COEFFICIENTS Using FIR1 Function on Matlab -
Posted By: seminar class
Created at: Friday 06th of May 2011 06:28:36 PM
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B = FIR1(N,Wn) designs an N'th order lowpass FIR digital filter
and returns the filter coefficients in length N+1 vector B.
The cut-off frequency Wn must be between 0 < Wn < 1.0, with 1.0
corresponding to half the sample rate. The filter B is real and
has linear phase, i.e., even symmetric coefficients obeying B(k) =
B(N+2-k), k = 1,2,...,N+1.
If Wn is a two-element vector, Wn = , FIR1 returns an
order N bandpass filter with passband W1 < W < W2.
B = FIR1(N,Wn,'high') designs a highpa ....etc

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