Gadget Ferrari, Z3X BOX Samsung Tool PRO, Nexbox, Octoplus Octopus Samsung Factory Reset, Ultimate Multi Tool, Android Jelly Bean, Specifications, Images and Price, Mobile Phone Tools

SIMULATION OF QUADRATURE MIRROR FILTER

SIMULATION OF QUADRATURE MIRROR FILTER - we should care about the technology that continues to grow, because all the technology is usually created to simplify our lives, every time there is a new technology that is embedded into the gadgets of various brands, on blogs Gadget Ferrari we will review the latest and old gadgets that start from the spec and the price ... well now we will discuss first about SIMULATION OF QUADRATURE MIRROR FILTER please refer to the information we will convey as we always try to display complete information.

Articles : SIMULATION OF QUADRATURE MIRROR FILTER
full Link : SIMULATION OF QUADRATURE MIRROR FILTER

You can also see our article on:


SIMULATION OF QUADRATURE MIRROR FILTER

SIMULATION OF QUADRATURE MIRROR FILTER
AIM:
To simulate the frequency response of quadrature mirror for a two channel filter band.
THEORY:
The QMF filter is used in the sub-band coding. This filter can be used for reducing aliasing. This is a multirate digital filter structure that employes 2 decimeter in signal synthesis section. The low pass and high pass filters in the analysis section have impulse response filters (n) and (n) respectively.
Similarly the low pass filter and high pass filters contained in the synthesis section have impulse response filters (n) and (n) respectively. To reduce aliasing the synthesis section have impulse response (n) and (n) respectively,
(ω)= (ω)
(ω)=- (ω-π)
Since (ω) and (ω)is a mirror image filters
H0(ω)=H(ω)
H1(ω)=H(ω- π)
G0(ω)=2H(ω)
This is due to the above design, aliasing effects cancels.
ALGORITHM:
1. Generate the low pass filter
2. Generate the high pass filter
3. Compute the gain response of two filters
4. Plot the gain response of two filters.













QUADRATURE MIRROR FILTER:






X(ω)








FILTER CHARACTERISTICS FOR SUB-BAND CODING


Gain
H0 (ω) H1 (ω)

PROGRAM
####################################################
clc;
clear all;

%generation of complimentary lpf
b1=fir1(50,0.5);

%generation of complimentary hpf
l=length(b1);
for k=1:l
    b2(k)=((-1)^k)*b1(k)
end

%computation of gain response of two filters
[H1Z,W]=freqZ(b1,1,256);
H1=abs(H1Z);
g1=20*log10(H1);
[H2Z,W]=freqZ(b2,1,256);
H2=abs(H2Z);
g2=20*log10(H2);

%PLOT OF GAIN RESPONSE OF TWO FILTERS
plot((W*180)/pi,g1,'-',(W*180)/pi,g2,'-');
grid on
xlabel('normalized freq');
ylabel('gain');

#############################################################

RESULT:
 Thus the frequency response of quadrature mirror filter for a two channel filter bands was simulated.





so many information about SIMULATION OF QUADRATURE MIRROR FILTER

hopefully the infromation we provide with the title SIMULATION OF QUADRATURE MIRROR FILTER can give you the reperency to find the gadget that suits your life.

you just read the article with the title SIMULATION OF QUADRATURE MIRROR FILTER if you intend to bookmark or share it for more useful for others please use link https://ferraricars77.blogspot.com/2013/12/simulation-of-quadrature-mirror-filter.html and if you want to get more information please visit other page.

Tag :
Share on Facebook
Share on Twitter
Share on Google+
Tags :

Related : SIMULATION OF QUADRATURE MIRROR FILTER

0 comments:

Posting Komentar