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Nested for loops for cell array

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ARN
ARN on 25 May 2020
Edited: ARN on 25 May 2020
Hi,
I have a cell RDM {1x10} and every cell contains (512x1024) matrix. Now i have applied the following algorithm on one Matrix which i have to apply on all the matrices of cell.
fft_size = 2^6;
Tr = 10;
Td = 8;
Gr = 4;
Gd = 4;
% offset the threshold by SNR value in dB
offset = 1.4;
for i = Tr+Gr+1:(fft_size/2)-(Gr+Tr)
for j = Td+Gd+1:fft_size-(Gd+Td)
noise_level = zeros(1,1);
for p = i-(Tr+Gr) : i+(Tr+Gr)
for q = j-(Td+Gd) : j+(Td+Gd)
if (abs(i-p) > Gr || abs(j-q) > Gd)
noise_level = noise_level + 10.^(RDM(p,q)/10);
end
end
end
threshold = 10*log10(noise_level/(2*(Td+Gd+1)*2*(Tr+Gr+1)-(Gr*Gd)-1));
threshold = threshold + offset;
CUT = RDM(i,j);
if (CUT < threshold)
RDM(i,j) = 0;
else
RDM(i,j) = 1;
end
end
end
I get error on indexing every time. How can i implement that for all 10 matrices. i tried the following.
for k = length(RDM)
RDM{k} = RDM{k}/max(max(RDM{k}));
for i = Tr+Gr+1:(fft_size/2)-(Gr+Tr)
for j = Td+Gd+1:fft_size-(Gd+Td)
%Create a vector to store noise_level for each iteration on training cells
%noise_level = cell{zeros(1,1)};
% Calculate noise SUM in the area around CUT
for p = i-(Tr+Gr) : i+(Tr+Gr)
for q = j-(Td+Gd) : j+(Td+Gd)
if (abs(i-p) > Gr || abs(j-q) > Gd)
noise_level{k} = noise_level{k} + 10.^(RDM{k}(p,q)/10);
end
end
end
% Calculate threshould from noise average then add the offset
threshold{k} = 10*log10(noise_level{k}/(2*(Td+Gd+1)*2*(Tr+Gr+1)-(Gr*Gd)-1));
threshold{k} = threshold{k} + offset;
CUT{k} = RDM{k}(i,j);
if (CUT{k} < threshold{k})
RDM{k}(i,j) = 0;
else
RDM{k}(i,j) = 1;
end
end
end
end
  4 Comments
Tommy
Tommy on 25 May 2020
Ok. Does this work?
for k = length(RDM)
RDM{k} = RDM{k}/max(max(RDM{k}));
for i = Tr+Gr+1:(fft_size/2)-(Gr+Tr)
for j = Td+Gd+1:fft_size-(Gd+Td)
%Create a vector to store noise_level for each iteration on training cells
noise_level{k} = zeros(1,1);
% Calculate noise SUM in the area around CUT
for p = i-(Tr+Gr) : i+(Tr+Gr)
for q = j-(Td+Gd) : j+(Td+Gd)
if (abs(i-p) > Gr || abs(j-q) > Gd)
noise_level{k} = noise_level{k} + 10.^(RDM{k}(p,q)/10);
end
end
end
% Calculate threshould from noise average then add the offset
threshold(k) = 10*log10(noise_level{k}/(2*(Td+Gd+1)*2*(Tr+Gr+1)-(Gr*Gd)-1));
threshold(k) = threshold(k) + offset;
CUT(k) = RDM{k}(i,j);
if (CUT(k) < threshold(k))
RDM{k}(i,j) = 0;
else
RDM{k}(i,j) = 1;
end
end
end
end
If not, what's the error you're getting?
ARN
ARN on 25 May 2020
Edited: ARN on 25 May 2020
Running is taking a long time: still no result. Maybe i can ignore the CUT and noise level, not the threshold though

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