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I have some data say X with size (100,2).This X is composed of data for 10 categories (set of 10). Now I would like to look the pattern in the data for each category. For this I need to have different colors assigned to each category. I am trying to loop instead of doing 10 different plots. I tried the below.

hold on
for i=1:10:100
   plot(X(i:i+9,1),X(i:i+9,2),'.')
end
hold off

This gave me a plot with same color. Can someone please let me know how to assign different colors for different range. Thanks

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3 Answers 3

up vote 2 down vote accepted

The easiest solution is to replace hold on by hold all.

If you want more control you have to manually define your line specifications (more info here) and then pass them to plot:

linespec = {'b.', 'r-', 'g--o'}; % define your ten linespecs in a cell array
hold on
for i=1:10:100
   plot(X(i:i+9,1),X(i:i+9,2),linespec{i})
end
hold off
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The answers mentioning hold all are correct and useful for cycling through the colors specified by the ColorOrder axes property. However, by default MATLAB only specifies a short list of colors (just 7 as of R2013b) to cycle through, and on the other hand it can be problematic to find a good set of colors for more data series. For 10 plots, you obviously cannot rely on the default ColorOrder, so a great way to define N visually distinct colors is with the "Generate Maximally Perceptually-Distinct Colors" (GMPDC) submission on the MATLAB Central File File Exchange. It is best described in the author's own words:

This function generates a set of colors which are distinguishable by reference to the "Lab" color space, which more closely matches human color perception than RGB. Given an initial large list of possible colors, it iteratively chooses the entry in the list that is farthest (in Lab space) from all previously-chosen entries.

For example, here are the colors generated when 25 are requested:

25 "maximally perceptually-distinct colors"

The GMPDC submission was chosen on MathWorks' official blog as Pick of the Week a few years ago in part because of the ability to request an arbitrary number of colors (in contrast to MATLAB's built in 7 default colors). They even made the excellent suggestion to set MATLAB's ColorOrder on startup to,

distinguishable_colors(20)

Of course, you can set the ColorOrder for a single axis or simply generate a list of colors to use in any way you like. For example, to generate 10 "maximally perceptually-distinct colors" and use them for 10 plots on the same axis (not using ColorOrder):

% Starting with X of size 100x2
X = reshape(X,10,10,2); % for clarity, column is category, row is observation
mpdc10 = distinguishable_colors(10) % 10x3 color list
hold on
for ii=1:10,
    plot(X(:,ii,1),X(:,ii,2),'.','Color',mpdc10(ii,:));
end

Alternatively, using the ColorOrder axis property simplifies the process:

X = reshape(X,10,10,2); % for clarity, and to avoid loop
mpdc10 = distinguishable_colors(10) % 10x3 color map
ha = axes; hold(ha,'on')
set(ha,'ColorOrder',mpdc10)
plot(X(:,:,1),X(:,:,2),'-.') % loop NOT needed, 'Color' NOT needed

APPENDIX

To get the ColorOrder RGB array used for the current axis,

get(gca,'ColorOrder')

To get the default ColorOrder for new axes,

get(0,'DefaultAxesColorOrder')

Example of setting new global ColorOrder with 10 colors on MATLAB start, in startup.m:

set(0,'DefaultAxesColorOrder',distinguishable_colors(10))
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hold on makes sure the new plot command adds to the plot instead of replacing it. However, each command works as if it were generating a fresh plot, including starting with the first line color (blue). If you want subsequent plots use different colors, use hold all instead. That way the standard 7 line colors are used in turn.

Since you have 10 lines to plot, you might want to specify the colors explicitly to make sure they are all different. For that, use the syntax

plot(..., 'Color', [r g b])
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