Hello,
I am trying to implement the resonance response at different damping ratios. I dont know why the phase plot looks like this
In litteratures, it is supposed to look like this, (Shifted),

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Bjorn Gustavsson
Bjorn Gustavsson am 5 Nov. 2021

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You could quick-fix this by plotting the phase-angle phi like:
plot(unwrap(2*phi)/2)
But you might have to check that you calculate the phase-angle correctly (right sign relative to the driving force and whatnot...)
HTH

7 Kommentare

Hello,
That was unfortunately not correct. The equation that generates the phase angle is
for i = 1:length(xi)
alfa(i,:) = atand((2*xi(i).*r)./(1-r.^2));
end
where r is the frequency ratio and xi is the damping ratio.
Bjorn Gustavsson
Bjorn Gustavsson am 5 Nov. 2021
Bearbeitet: Bjorn Gustavsson am 5 Nov. 2021
@Derek Cooper: Transfer to work with angles in radians now, only when plotting you convert to degrees (sooner rather than later you will start to look at the mechanics of rotating bodies and whatnot, then it will become more of a nuisance to work with angles in degrees). If you change your code to:
for i = 1:length(xi)
alfa(i,:) = atan((2*xi(i).*r)./(1-r.^2));
end
plot(180/pi*unwrap(alfa*2)/2)
it should work.
Derek Cooper
Derek Cooper am 5 Nov. 2021
@Bjorn Gustavsson Unfortunately, that doesnt work too.
Bjorn Gustavsson
Bjorn Gustavsson am 5 Nov. 2021
Sure does - if you had manage to replace the obvious typo...
Derek Cooper
Derek Cooper am 5 Nov. 2021
This is what I am getting with your suggestion
Chek the size of your alfa-variable. From the help of unwrap you see that it unwraps along the first (non-singleton) dimension, and you would most likely want the unwrapping along the second dimension:
plot(r,180/pi*unwrap(2*alfa,[],2)/2)
Derek Cooper
Derek Cooper am 8 Nov. 2021
Now it worked, thank you very much.

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