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DSPFINAL.m
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DSPFINAL.m
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function varargout = DSPFINAL(varargin)
% DSPFINAL MATLAB code for DSPFINAL.fig
% DSPFINAL, by itself, creates a new DSPFINAL or raises the existing
% singleton*.
%
% H = DSPFINAL returns the handle to a new DSPFINAL or the handle to
% the existing singleton*.
%
% DSPFINAL('CALLBACK',hObject,eventData,handles,...) calls the local
% function named CALLBACK in DSPFINAL.M with the given input arguments.
%
% DSPFINAL('Property','Value',...) creates a new DSPFINAL or raises the
% existing singleton*. Starting from the left, property value pairs are
% applied to the GUI before DSPFINAL_OpeningFcn gets called. An
% unrecognized property name or invalid value makes property application
% stop. All inputs are passed to DSPFINAL_OpeningFcn via varargin.
%
% *See GUI Options on GUIDE's Tools menu. Choose "GUI allows only one
% instance to run (singleton)".
%
% See also: GUIDE, GUIDATA, GUIHANDLES
% Edit the above text to modify the response to help DSPFINAL
% Last Modified by GUIDE v2.5 30-May-2022 01:46:30
% Begin initialization code - DO NOT EDIT
gui_Singleton = 1;
gui_State = struct('gui_Name', mfilename, ...
'gui_Singleton', gui_Singleton, ...
'gui_OpeningFcn', @DSPFINAL_OpeningFcn, ...
'gui_OutputFcn', @DSPFINAL_OutputFcn, ...
'gui_LayoutFcn', [] , ...
'gui_Callback', []);
if nargin && ischar(varargin{1})
gui_State.gui_Callback = str2func(varargin{1});
end
if nargout
[varargout{1:nargout}] = gui_mainfcn(gui_State, varargin{:});
else
gui_mainfcn(gui_State, varargin{:});
end
% End initialization code - DO NOT EDIT
% --- Executes just before DSPFINAL is made visible.
function DSPFINAL_OpeningFcn(hObject, eventdata, handles, varargin)
% This function has no output args, see OutputFcn.
% hObject handle to figure
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% varargin command line arguments to DSPFINAL (see VARARGIN)
% Choose default command line output for DSPFINAL
handles.output = hObject;
% Update handles structure
guidata(hObject, handles);
% UIWAIT makes DSPFINAL wait for user response (see UIRESUME)
% uiwait(handles.figure1);
% --- Outputs from this function are returned to the command line.
function varargout = DSPFINAL_OutputFcn(hObject, eventdata, handles)
% varargout cell array for returning output args (see VARARGOUT);
% hObject handle to figure
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Get default command line output from handles structure
varargout{1} = handles.output;
function fileName_Callback(hObject, eventdata, handles)
% hObject handle to fileName (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of fileName as text
% str2double(get(hObject,'String')) returns contents of fileName as a double
% --- Executes during object creation, after setting all properties.
function fileName_CreateFcn(hObject, eventdata, handles)
% hObject handle to fileName (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function gain1_Callback(hObject, eventdata, handles)
% hObject handle to gain1 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of gain1 as text
% str2double(get(hObject,'String')) returns contents of gain1 as a double
% --- Executes during object creation, after setting all properties.
function gain1_CreateFcn(hObject, eventdata, handles)
% hObject handle to gain1 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function gain2_Callback(hObject, eventdata, handles)
% hObject handle to gain2 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of gain2 as text
% str2double(get(hObject,'String')) returns contents of gain2 as a double
% --- Executes during object creation, after setting all properties.
function gain2_CreateFcn(hObject, eventdata, handles)
% hObject handle to gain2 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function gain3_Callback(hObject, eventdata, handles)
% hObject handle to gain3 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of gain3 as text
% str2double(get(hObject,'String')) returns contents of gain3 as a double
% --- Executes during object creation, after setting all properties.
function gain3_CreateFcn(hObject, eventdata, handles)
% hObject handle to gain3 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function gain4_Callback(hObject, eventdata, handles)
% hObject handle to gain4 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of gain4 as text
% str2double(get(hObject,'String')) returns contents of gain4 as a double
% --- Executes during object creation, after setting all properties.
function gain4_CreateFcn(hObject, eventdata, handles)
% hObject handle to gain4 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function gain5_Callback(hObject, eventdata, handles)
% hObject handle to gain5 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of gain5 as text
% str2double(get(hObject,'String')) returns contents of gain5 as a double
% --- Executes during object creation, after setting all properties.
function gain5_CreateFcn(hObject, eventdata, handles)
% hObject handle to gain5 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function gain6_Callback(hObject, eventdata, handles)
% hObject handle to gain6 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of gain6 as text
% str2double(get(hObject,'String')) returns contents of gain6 as a double
% --- Executes during object creation, after setting all properties.
function gain6_CreateFcn(hObject, eventdata, handles)
% hObject handle to gain6 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function gain7_Callback(hObject, eventdata, handles)
% hObject handle to gain7 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of gain7 as text
% str2double(get(hObject,'String')) returns contents of gain7 as a double
% --- Executes during object creation, after setting all properties.
function gain7_CreateFcn(hObject, eventdata, handles)
% hObject handle to gain7 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function gain8_Callback(hObject, eventdata, handles)
% hObject handle to gain8 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of gain8 as text
% str2double(get(hObject,'String')) returns contents of gain8 as a double
% --- Executes during object creation, after setting all properties.
function gain8_CreateFcn(hObject, eventdata, handles)
% hObject handle to gain8 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function gain9_Callback(hObject, eventdata, handles)
% hObject handle to gain9 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of gain9 as text
% str2double(get(hObject,'String')) returns contents of gain9 as a double
% --- Executes during object creation, after setting all properties.
function gain9_CreateFcn(hObject, eventdata, handles)
% hObject handle to gain9 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
% --- Executes on selection change in filter.
function filter_Callback(hObject, eventdata, handles)
% hObject handle to filter (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: contents = cellstr(get(hObject,'String')) returns filter contents as cell array
% contents{get(hObject,'Value')} returns selected item from filter
% --- Executes during object creation, after setting all properties.
function filter_CreateFcn(hObject, eventdata, handles)
% hObject handle to filter (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: popupmenu controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function sample_Callback(hObject, eventdata, handles)
% hObject handle to sample (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of sample as text
% str2double(get(hObject,'String')) returns contents of sample as a double
% --- Executes during object creation, after setting all properties.
function sample_CreateFcn(hObject, eventdata, handles)
% hObject handle to sample (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
% --- Executes on button press in ok.
function ok_Callback(hObject, eventdata, handles)
gain1Text = get(handles.gain1,'String');
if isempty(gain1Text)
msgbox('Enter the gain of the band 0 - 170 Hz','Error','error')
return
else
global g1;
g1 = db2mag(str2num(gain1Text));
if isempty(g1)
msgbox('Invalid input for the gain of the band 0 - 170 Hz','Error','error')
return
end
end
gain2Text = get(handles.gain2,'String');
if isempty(gain2Text)
msgbox('Enter the gain of the band 170 - 310 Hz','Error','error')
return
else
global g2;
g2 = db2mag(str2num(gain2Text));
if isempty(g2)
msgbox('Invalid input for the gain of the band 170 - 310 Hz','Error','error')
return
end
end
gain3Text = get(handles.gain3,'String');
if isempty(gain3Text)
msgbox('Enter the gain of the band 310 - 600 Hz','Error','error')
return
else
global g3;
g3 = db2mag(str2num(gain3Text));
if isempty(g3)
msgbox('Invalid input for the gain of the band 310 - 600 Hz','Error','error')
return
end
end
gain4Text = get(handles.gain4,'String');
if isempty(gain4Text)
msgbox('Enter the gain of the band 600 - 1000 Hz','Error','error')
return
else
global g4;
g4 = db2mag(str2num(gain4Text));
if isempty(g4)
msgbox('Invalid input for the gain of the band 600 - 1000 Hz','Error','error')
return
end
end
gain5Text = get(handles.gain5,'String');
if isempty(gain5Text)
msgbox('Enter the gain of the band 1 - 3 KHz','Error','error')
return
else
global g5;
g5 = db2mag(str2num(gain5Text));
if isempty(g5)
msgbox('Invalid input for the gain of the band 1 - 3 KHz','Error','error')
return
end
end
gain6Text = get(handles.gain6,'String');
if isempty(gain6Text)
msgbox('Enter the gain of the band 3 - 6 KHz','Error','error')
return
else
global g6;
g6 = db2mag(str2num(gain6Text));
if isempty(g6)
msgbox('Invalid input for the gain of the band 3 - 6 KHz','Error','error')
return
end
end
gain7Text = get(handles.gain7,'String');
if isempty(gain7Text)
msgbox('Enter the gain of the band 6 - 12 KHz','Error','error')
return
else
global g7;
g7 = db2mag(str2num(gain7Text));
if isempty(g7)
msgbox('Invalid input for the gain of the band 6 - 12 KHz','Error','error')
return
end
end
gain8Text = get(handles.gain8,'String');
if isempty(gain8Text)
msgbox('Enter the gain of the band 12 - 14 KHz','Error','error')
return
else
global g8;
g8 = db2mag(str2num(gain8Text));
if isempty(g8)
msgbox('Invalid input for the gain of the band 12 - 14 KHz','Error','error')
return
end
end
gain9Text = get(handles.gain9,'String');
if isempty(gain9Text)
msgbox('Enter the gain of the band 14 - 16 KHz','Error','error')
return
else
global g9;
g9 = db2mag(str2num(gain9Text));
if isempty(g9)
msgbox('Invalid input for the gain of the band 14 - 16 KHz','Error','error')
return
end
end
%Fs_New is the output sample rate
sampleText = get(handles.sample,'String');
if isempty(sampleText)
msgbox('Enter the output sample rate','Error','error')
return
else
Fs_New = str2num(sampleText);
if isempty(Fs_New)
msgbox('Invalid input for the output sample rate','Error','error')
return
end
end
%filter = 2 for FIR, filter = 3 for IIR
filter = get(handles.filter, 'Value');
if filter == 1
msgbox('Choose a filter type','Error','error')
return
end
global x;
global Fs;
%Fs is the file sample rate
if(Fs<=32000)
x=resample(x,34000,Fs);
Fs=34000;
end
if (filter==3)
IIR();
else
FIR();
end
global Y_comp;
sound(Y_comp,Fs_New)
%audiowrite('DSPFINAL.wav', Y_comp, Fs_New)
set(handles.uipanel6,'visible','on');
L = length(Y_comp);
T = 0: 1/Fs_New: (L - 1)/Fs_New;
axes(handles.axes4);
plot(T,Y_comp);title('Time Domain');xlabel('Time(sec)');ylabel('Amplitude');
df = Fs_New/L;
Fvec = -Fs_New/2:df:Fs_New/2 - df;
Yw=fftshift(fft(Y_comp))/length(fft(Y_comp));
axes(handles.axes5);
plot(Fvec,abs(Yw));title('Frequency Domain');xlabel('Frequency(Hz)');ylabel('Amplitude');
% hObject handle to ok (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% --- Executes on button press in openFile.
function openFile_Callback(hObject, eventdata, handles)
set(handles.uipanel6,'visible','off');
filename = get(handles.fileName,'String');
if isempty(filename)
msgbox('Enter the file name','Error','error')
return
else
filename = strcat(filename,'.wav');
if exist(filename, 'file') == 2
global x;
global Fs;
[x,Fs] = audioread(filename);
disp(Fs)
set(handles.filter,'visible','on');
set(handles.gainStatic,'visible','on');
set(handles.ok,'visible','on');
set(handles.sampleStatic,'visible','on');
set(handles.sample,'visible','on');
set(handles.uipanel1,'visible','on');
set(handles.uipanel5,'visible','on');
%plot the original signal in time domain
L = length(x);
Toriginal = 0: 1/Fs: (L - 1)/Fs;
%activate axes2
axes(handles.axes2);
plot(Toriginal,x);title('Time Domain');xlabel('Time(sec)');ylabel('Amplitude');
%plot the original signal in frequency domain
df = Fs/L;
Fvec = -Fs/2:df:Fs/2 - df;
Xw=fftshift(fft(x))/length(fft(x));
%activate axes3
axes(handles.axes3);
plot(Fvec,abs(Xw));title('Frequency Domain');xlabel('Frequency(Hz)');ylabel('Amplitude');
else
msgbox('File not existing','Error','error')
return
end
end
% hObject handle to openFile (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
function FIR()
global g1;
global g2;
global g3;
global g4;
global g5;
global g6;
global g7;
global g8;
global g9;
global x;
global Fs;
N=100;
Wn1=170/(Fs/2);
%The Blackman window exhibits an even lower maximum stopband ripple in the resulting FIR filter than the Hamming window
H1=fir1(N,Wn1,blackman(N+1));
fvtool(H1);
Y1=filter(H1,1,x);
Y1=Y1*g1;
Wc2=[171,310];
Wn2=Wc2./(Fs/2);
H2=fir1(N,Wn2,blackman(N+1));
fvtool(H2);
Y2=filter(H2,1,x);
Y2=Y2*g2;
Wc3=[311,600];
Wn3=Wc3./(Fs/2);
H3=fir1(N,Wn3,blackman(N+1));
fvtool(H3);
Y3=filter(H3,1,x);
Y3=Y3*g3;
Wc4=[601,1000];
Wn4=Wc4./(Fs/2);
H4=fir1(N,Wn4,blackman(N+1));
fvtool(H4);
Y4=filter(H4,1,x);
Y4=Y4*g4;
Wc5=[1001,3000];
Wn5=Wc5./(Fs/2);
H5=fir1(N,Wn5,blackman(N+1));
fvtool(H5);
Y5=filter(H5,1,x);
Y5=Y5*g5;
Wc6=[3001,6000];
Wn6=Wc6./(Fs/2);
H6=fir1(N,Wn6,blackman(N+1));
fvtool(H6);
Y6=filter(H6,1,x);
Y6=Y6*g6;
Wc7=[6001,12000];
Wn7=Wc7./(Fs/2);
H7=fir1(N,Wn7,blackman(N+1));
fvtool(H7);
Y7=filter(H7,1,x);
Y7=Y7*g7;
Wc8=[12001,14000];
Wn8=Wc8./(Fs/2);
H8=fir1(N,Wn8,blackman(N+1));
fvtool(H8);
Y8=filter(H8,1,x);
Y8=Y8*g8;
Wc9=[14001,16000];
Wn9=Wc9./(Fs/2);
H9=fir1(N,Wn9,blackman(N+1));
fvtool(H9);
Y9=filter(H9,1,x);
Y9=Y9*g9;
global Y_comp;
Y_comp = Y1 + Y2 + Y3 + Y4 + Y5 + Y6 + Y7 + Y8 + Y9;
function IIR()
global g1;
global g2;
global g3;
global g4;
global g5;
global g6;
global g7;
global g8;
global g9;
global x;
global Fs;
N=2;
%Fc = Fs/2
Wn1=170/(Fs/2);
[num1,den1]=butter(N,Wn1);
Y1=filter(num1,den1,x);
Y1=Y1*g1;
%Filter Visualization Tool
fvtool(num1,den1);
Wc2=[171,310];
Wn2=Wc2./(Fs/2);
[num2,den2]=butter(N,Wn2,'bandpass');
Y2=filter(num2,den2,x);
Y2=Y2*g2;
fvtool(num2,den2);
Wc3=[311,600];
Wn3=Wc3./(Fs/2);
[num3,den3]=butter(N,Wn3,'bandpass');
Y3=filter(num3,den3,x);
Y3=Y3*g3;
fvtool(num3,den3);
Wc4=[601,1000];
Wn4=Wc4./(Fs/2);
[num4,den4]=butter(N,Wn4,'bandpass');
Y4=filter(num4,den4,x);
Y4=Y4*g4;
fvtool(num4,den4);
Wc5=[1001,3000];
Wn5=Wc5./(Fs/2);
[num5,den5]=butter(N,Wn5,'bandpass');
Y5=filter(num5,den5,x);
Y5=Y5*g5;
fvtool(num5,den5);
Wc6=[3001,6000];
Wn6=Wc6./(Fs/2);
[num6,den6]=butter(N,Wn6,'bandpass');
Y6=filter(num6,den6,x);
Y6=Y6*g6;
fvtool(num6,den6);
Wc7=[6001,12000];
Wn7=Wc7./(Fs/2);
[num7,den7]=butter(N,Wn7,'bandpass');
Y7=filter(num7,den7,x);
Y7=Y7*g7;
fvtool(num7,den7);
Wc8=[12001,14000];
Wn8=Wc8./(Fs/2);
[num8,den8]=butter(N,Wn8,'bandpass');
Y8=filter(num8,den8,x);
Y8=Y8*g8;
fvtool(num8,den8);
Wc9=[14001,16000];
Wn9=Wc9./(Fs/2);
[num9,den9]=butter(N,Wn9,'bandpass');
Y9=filter(num9,den9,x);
Y9=Y9*g9;
fvtool(num9,den9);
global Y_comp;
Y_comp = Y1 + Y2 + Y3 + Y4 + Y5 + Y6 + Y7 + Y8 + Y9;
% --- Executes when uipanel5 is resized.
function uipanel5_ResizeFcn(hObject, ~, handles)
% hObject handle to uipanel5 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)