Semester assignment for the course "Multimedia systems and virtual reality" of THMMY in AUTH university.
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function frameT = iFilterbank(frameF, frameType, winType)
%Implementation of the Inverse Filter Bank step
% Usage frameT = iFilterbank(frameF, frameType, winType), where:
% Inputs
% - frameF is the frame in the frequency domain, in MDCT coefficients
% representation containing both channels of the audio stored in an
% array of dimensions 1024X2
% - frameType is the type of the current frame in string
% representation, can be one of "OLS" (ONLY_LONG_SEQUENCE), "LSS"
% (LONG_START_SEQUENCE), "ESH" (EIGHT_SHORT_SEQUENCE), "LPS"
% (LONG_STOP_SEQUENCE)
% - winType is the type of the window selected, can be one of "KBD",
% "SIN"
%
% Output
% - frameT is a frame in the time domain, containing both channels of
% the audio stored in an array of dimensions 2048X2
% Declares persistent windows variables and initializes if empty
persistent kaiserWindowLong kaiserWindowShort sinWindowLong sinWindowShort;
if isempty(kaiserWindowLong) || isempty(kaiserWindowShort) || ...
isempty(sinWindowLong) || isempty(sinWindowShort)
kaiserLong = kaiser(1024, 6*pi);
kaiserSumLong = sum(kaiserLong);
kaiserShort = kaiser(128, 4*pi);
kaiserSumShort = sum(kaiserShort);
kaiserWindowLong(1:1024) = movsum(kaiserLong, [1024 0]);
kaiserWindowLong(1025:2048) = movsum(flipud(kaiserLong), [0 1024]);
kaiserWindowLong = sqrt(kaiserWindowLong ./ kaiserSumLong);
sinWindowLong = sin(pi * ((0:2047) + 0.5) / 2048);
kaiserWindowShort(1:128) = movsum(kaiserShort, [128 0]);
kaiserWindowShort(129:256) = movsum(flipud(kaiserShort), [0 128]);
kaiserWindowShort = sqrt(kaiserWindowShort ./ kaiserSumShort);
sinWindowShort = sin(pi * ((0:255) + 0.5) / 256);
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end
frameT(2048, 2) = 0;
% Applies appropriate window to the frame
for channel=1:2
if strcmp(frameType, 'OLS')
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frameT(:, channel) = imdct4(frameF(:, channel));
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if strcmp(winType, 'KBD')
frameT(:, channel) = frameT(:, channel) .* kaiserWindowLong(:);
elseif strcmp(winType, 'SIN')
frameT(:, channel) = frameT(:, channel) .* sinWindowLong(:);
else
error('filterbank, l[20]: Unsupported window type input!')
end
elseif strcmp(frameType, 'LSS')
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frameT(:, channel) = imdct4(frameF(:, channel));
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if strcmp(winType, 'KBD')
frameT(1:1024, channel) = frameT(1:1024, channel) .* kaiserWindowLong(1:1024)';
frameT(1473:1600, channel) = frameT(1473:1600, channel) .* kaiserWindowShort(129:end)';
frameT(1601:end, channel) = 0;
elseif strcmp(winType, 'SIN')
frameT(1:1024, channel) = frameT(1:1024, channel) .* sinWindowLong(1:1024)';
frameT(1473:1600, channel) = frameT(1473:1600, channel) .* sinWindowShort(129:end)';
frameT(1601:end, channel) = 0;
else
error('filterbank, l[20]: Unsupported window type input!')
end
elseif strcmp(frameType, 'LPS')
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frameT(:, channel) = imdct4(frameF(:, channel));
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if strcmp(winType, 'KBD')
frameT(1:448, channel) = 0;
frameT(449:576, channel) = frameT(449:576, channel) .* kaiserWindowShort(1:128)';
frameT(1025:end, channel) = frameT(1025:end, channel) .* kaiserWindowLong(1025:end)';
elseif strcmp(winType, 'SIN')
frameT(1:448, channel) = 0;
frameT(449:576, channel) = frameT(449:576, channel) .* sinWindowShort(1:128)';
frameT(1025:end, channel) = frameT(1025:end, channel) .* sinWindowLong(1025:end)';
else
error('filterbank, l[20]: Unsupported window type input!')
end
elseif strcmp(frameType, 'ESH')
for subFrameIndex = 1:8
subFrame = imdct4(frameF((subFrameIndex - 1) * 128 + 1:subFrameIndex * 128, channel));
if strcmp(winType, 'KBD')
subFrame = subFrame .* kaiserWindowShort';
elseif strcmp(winType, 'SIN')
subFrame = subFrame .* sinWindowShort';
end
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frameT(448 + (subFrameIndex - 1) * 128 + 1:448 + (subFrameIndex + 1) * 128, channel) = ...
frameT(448 + (subFrameIndex - 1) * 128 + 1:448 + (subFrameIndex + 1) * 128, channel) + subFrame;
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end
end
end
end