Merge branch 'main' of https://github.com/ltcptgeneral/ece45-project
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commit
e8f00cddd0
@ -12,10 +12,21 @@ function output = fade_in(input, time)
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len = length(input);
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% need to use whole number for time
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time = round(time);
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% if time parameter longer than signal, treat time as
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% the duration of original signal
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if time > len
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time = len
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time = len;
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end
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% in order to create array, time >=1
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% if not, it's arbitrarily set to 1
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% in which case the fade_in effect
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% is virtually nonexistent
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if time < 1
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time = 1;
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end
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% set multiplier as 1D array
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@ -11,18 +11,29 @@ function output = fade_out(input, time)
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len = length(input);
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% need to use time as a whole number
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time = round(time);
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% if time parameter longer than signal, treat time as
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% the duration of original signal
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if time > len
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time = len
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end
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% in order to create array, time >=1
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% if not, it's arbitrarily set to 1
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% in which case the fade_in effect
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% is virtually nonexistent
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if time < 1
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time = 1;
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end
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% set multiplier as 1D array
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multiplier = (1 : time) / time;
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% fade out effect: from full volume of signal to no volume
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multiplier = flip(multiplier)
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multiplier = flip(multiplier);
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while length(multiplier) < len
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multiplier = [multiplier 0];
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55
src/generate_trapezoid.m
Normal file
55
src/generate_trapezoid.m
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@ -0,0 +1,55 @@
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function x = generate_trapezoid(amplitude, frequency, phase, fs, duration, duty)
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% GENERATE_TRAPEZOID: returns a matrix of sampled square wave
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% CONTRIBUTORS:
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% Daniel Doan: Author
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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 cycle should be a number between 0 and 1.
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% duty of 0.5 would have 2 trapezoids in first half of each cycle
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% example of wave with duty of 0.5, where the peaks are amplitude/2:
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%
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% ____
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% / \
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% / \ ________________
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% \ /
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% \____/
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%
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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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% periodic ramp from 0 to 1
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% progression through a cycle
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st = mod(frequency * t - phase, 1);
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slope = (amplitude/2) / (duty/8);
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if(st < duty)
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if(st < duty/8 || st > 7*duty/8)
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x(i) = slope * st;
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else
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if(st < 5*duty/8)
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x(i) = amplitude/2 - slope * (st-(3*duty/8));
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end
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if(st < 3*duty/8)
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x(i) = amplitude/2;
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end
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if(st > 5*duty/8)
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x(i) = -amplitude/2;
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end
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end
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end
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end
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end
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