How to do differentiation in Matlab
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Anurag Sharma
am 28 Mai 2024
Bearbeitet: Torsten
am 29 Mai 2024
clc;
clear;
THT = 0:12:360;
L_spm = [67.14387343 67.08087868 71.27139857 77.8011002 83.48598354 86.53313448 86.96218524 86.54264509 86.55222711 86.96002063 86.43128473 83.48041917 77.77271123 71.24225453 67.07111986 67.25745156 67.08157624 71.23009025 77.76475253 83.46615144 86.42639244 86.96777069 86.54247287 86.56340306 86.9412182 86.52945688 83.49766473 77.78259172 71.25635182 67.06788196 67.14602485];
How to differentiate L_spm with respect to THT? Thanks.
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James Tursa
am 28 Mai 2024
Bearbeitet: James Tursa
am 28 Mai 2024
Are you just asking for piecewise linear differencing for derivative calculations between the points? E.g.,
THT = 0:12:360;
L_spm = [67.14387343 67.08087868 71.27139857 77.8011002 83.48598354 86.53313448 86.96218524 86.54264509 86.55222711 86.96002063 86.43128473 83.48041917 77.77271123 71.24225453 67.07111986 67.25745156 67.08157624 71.23009025 77.76475253 83.46615144 86.42639244 86.96777069 86.54247287 86.56340306 86.9412182 86.52945688 83.49766473 77.78259172 71.25635182 67.06788196 67.14602485];
d = diff(L_spm) ./ diff(THT)
Or are you asking how to curve fit and calculate derivatives from the curve?
2 Kommentare
Torsten
am 29 Mai 2024
Bearbeitet: Torsten
am 29 Mai 2024
THT = 0:12:360;
L_spm = [67.14387343 67.08087868 71.27139857 77.8011002 83.48598354 86.53313448 86.96218524 86.54264509 86.55222711 86.96002063 86.43128473 83.48041917 77.77271123 71.24225453 67.07111986 67.25745156 67.08157624 71.23009025 77.76475253 83.46615144 86.42639244 86.96777069 86.54247287 86.56340306 86.9412182 86.52945688 83.49766473 77.78259172 71.25635182 67.06788196 67.14602485];
d = gradient(L_spm)./gradient(THT);
plot(THT,d)
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