switching functions for continuous time
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I am plotting a function for say:
t = 0:0.1:1 %seconds
I want to use one function for:
t < 0.2
One for:
t >= 0.2 & t <= 0.0.8
And then one for:
t >0.8
I can't get it to work using the conventions I have stated aboce
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Respuesta aceptada
Walter Roberson
el 25 de Mayo de 2011
y = zeros(size(t));
idx = t<0.2;
y(idx) = f1(t(idx));
idx = t>=0.2 & t<=0.08
y(idx) = f2(t(idx));
idx = t>0.8;
y(idx) = f3(t(idx));
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Más respuestas (8)
A
el 14 de Jun. de 2011
2 comentarios
Walter Roberson
el 14 de Jun. de 2011
"for" loop and an if/elseif structure if it is expensive to compute the values.
If computing the values is relatively cheap,
y = f1(x);
idx = find(y >= 80,1,'first');
y(idx:end) = f2(x(idx:end));
A
el 21 de Jun. de 2011
5 comentarios
Walter Roberson
el 21 de Jun. de 2011
Good point about the index; sorry about that.
If your y are in increasing order, then
find(SpecificY < y,1,'last')
A
el 23 de Jun. de 2011
3 comentarios
Walter Roberson
el 23 de Jun. de 2011
Time_Value = V_In * .632;
Time_Check = find(V_C_SS <= Time_Value,1,'last');
Time_Constant = t(Time_Check);
A
el 23 de Jun. de 2011
4 comentarios
Walter Roberson
el 23 de Jun. de 2011
That's what the code you posted above does, unless f2 is sensitive to the position of the x as well as to the value of the x. If it _is_ sensitive to the position of the x, then the next thing we would need to know is whether the f2 values are calculated independently or if values from earlier input influence later output.
If there is dependence on the position then,
y = f1(x);
y2 = f2(x);
idx = find(y >= 80,1,'first');
y(idx:end) = y2(idx:end);
A
el 23 de Jun. de 2011
1 comentario
Walter Roberson
el 23 de Jun. de 2011
Time_Check = find(V_C_SS > Time_Value,1,'first') - 1;
Provided that your values do not start out above the time constant, dip, rise, with it being the point on the rise you want to get.
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