How to change axis size without affecting bin size

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n=100;
for i=1:3000
ZZ=Zf{i};
DD=Df{i};
Zf2=linspace(min(ZZ(:)),max(ZZ(:)),n);
Df2=linspace(min(DD(:)),max(DD(:)),n);
Zfr=interp1(Zf2,1:numel(Zf2),ZZ,'nearest');
Dfr=interp1(Df2,1:numel(Df2),DD,'nearest');
zm=accumarray([Dfr Zfr],1,[n n]);
surf(zm);
hold on
end
This code generates the following histogram
How do I modify the x and y axis to make them go up until the max of Dfr and Zfr but still have the number of bins remain 100?

Accepted Answer

Walter Roberson
Walter Roberson on 27 Nov 2020
[Zf_S, Zf_L] = cellfun(@(B) bounds(B, 'all'), Zf);
Zf_max = max(Zf_L);
Zf_min = min(Zf_S);
Zf_vals = linspace(Zf_min, Zf_max, n);
[Df_S, Df_L] = cellfun(@(B) bounds(B, 'all'), Df);
Df_max = max(Df_L);
Df_min = min(Df_S);
Df_vals = linspace(Df_min, Df_max, n);
Now do your interpolation with respect to Zf_vals and Df_vals instead of with respect to a vector that changes each time.
Hint: discretize() instead of interpolation .
  9 Comments
Andrew Stark
Andrew Stark on 28 Nov 2020
My apologies for the banana plot the following code was used
for i=1:1
Zf2=Zf{i};
Df2=Df{i};
plot(Df2,Zf2)
hold on
end
Whereas for the histogram the code was
n=100;
[Zf_S, Zf_L] = cellfun(@(B) bounds(B, 'all'), Zf);
Zf_max = max(Zf_L);
Zf_min = min(Zf_S);
Zf_vals = linspace(Zf_min, Zf_max, n);
[Df_S, Df_L] = cellfun(@(B) bounds(B, 'all'), Df);
Df_max = max(Df_L);
Df_min = min(Df_S);
Df_vals = linspace(Df_min, Df_max, n);
for i=1:1
ZZ = Zf{i};
DD = Df{i};
Zfr = discretize(ZZ, Zf_vals);
Dfr = discretize(DD, Df_vals);
zm = accumarray([Dfr Zfr], 1, [n n]);
surf(Df_vals, Zf_vals, zm);
hold on
end
Andrew Stark
Andrew Stark on 28 Nov 2020
Additionally what is the best command to use in a for loop that will continuously add up the zm arrays

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