Merge branch 'main' of https://github.com/ltcptgeneral/ece45-project
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commit
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src/Generators/generate_pulse.m
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src/Generators/generate_pulse.m
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function x = generate_pulse(amplitude, frequency, phase, fs, duration, duty)
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% GENERATE_puse: returns a matrix of sampled pulse wave
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% CONTRIBUTORS:
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% Brian Tran: Created the wave
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% DOCUMENTATION:
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% phase shift is in number of periods
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% fs is the sampling frequency: how many sample points per second
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% duration is time in seconds
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% duty is a number between 0 and 1
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% initialize local variables from input arguments
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n = fs * duration; % number of samples (length of matrix)
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dt = 1 / fs; % sampling period: time between two sample points
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% initialize a one dimensional zero matrix to be populated
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x = zeros(1, n);
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f0=1e+6; % 1MHz
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Fs=3e+6;
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Tf=0.001; % 1 millisecond
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t=0:1/Fs:Tf-1/Fs;
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td=0.1; % duty cycle
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A0=10; % 10 Volts
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F=0;
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N=1000; % Number of points
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% populate the matrix
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for n = 1:N
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F=F+(1/n)*cos(n*2*pi*f0*t).*sin(n*pi*td);
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end
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F=F*(2*A0/pi);
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F=F+A0*td;
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end
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src/distortion_filter.m
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src/distortion_filter.m
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% An audio is distorted based on the value of HIGH. Nothing of a certain
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% threshold should be played above this constant, or they are simply clipped to this
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% value. Inspired from Meghaj_Echo.m and epic_effect_schluep.m.
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% Author: Jason Liang
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% Mekhi Ellington: Added some comments and editted formatting
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function y = distortion_filter(x, HIGH)
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len = length(X); %Storing length of X.
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X = fft(x); %X is the Fourier Transform of x.
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X = fftshift(X); %Shifts X.
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Y = zeros(1, len); %Matrix of length containing zeros.
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for ind = 1:len
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if (X(ind) > HIGH)
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Y(ind) = HIGH;
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elseif (X(ind) < -HIGH)
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Y(ind) = -HIGH;
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else
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Y(ind) = X(ind);
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end
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end
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Y = fftshift(Y); %Shifts Y.
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y = ifft(Y); %Inverse Fourier Transform of Y.
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y = real(y); %Stores only the real part of the complex y.
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end
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25
src/generate_cosine.m
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src/generate_cosine.m
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function x = generate_cosine(amplitude, frequency, phase, fs, duration, duty)
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% GENERATE_WAVENAME: returns a matrix of sampled WAVENAME wave
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% CONTRIBUTORS:
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% Mekhi Ellington: Original Creator
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% DOCUMENTATION:
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% phase shift is in number of periods
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% fs is the sampling frequency: how many sample points per second
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% duration is time in seconds
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% duty is a number between 0 and 1
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% initialize local variables from input arguments
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n = fs * duration; % number of samples (length of matrix)
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dt = 1 / fs; % sampling period: time between two sample points
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% initialize a one dimensional zero matrix to be populated
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x = zeros(1, n);
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% populate the matrix
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for i = 1:n
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t = i * dt;
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x(i) = amplitude * cos(2*pi*frequency*t-phase);
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end
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end
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