Simply this sort of loop evaluates my function to the reference correctly:
for t = 2:length(x)
x(t) = x(t-1)+x(t);
end
tf = isequal(x,y);
tf
tf =
logical
1
While, surprisngly, this does not:
t = 2:length(x);
x(t) = x(t-1)+x(t);
tf = isequal(x,y);
tf
tf =
logical
0
Is there something obvious about Matlab I'm missing here?

Respuestas (1)

Stephen23
Stephen23 el 25 de En. de 2019
Editada: Stephen23 el 25 de En. de 2019

0 votos

You are overwriting x values with the loop, so when you then try the vectorized code you have different x values. Clearly different input x values will give different output x values.
It works perfectly for me, when I do NOT overwrite the x vector values:
>> x = randi(9,1,7)
x =
1 8 9 7 7 7 4
>> for t = 2:length(x), y(t) = x(t-1)+x(t); end % assign to y, not x
>> y
y =
0 9 17 16 14 14 11
>> t = 2:length(x);
>> z(t) = x(t-1)+x(t); % assign to z, not x
>> z
z =
0 9 17 16 14 14 11

5 comentarios

Oliver Dechant
Oliver Dechant el 25 de En. de 2019
Sure this is a fine answer, except that I need to overwrite the values. That behaviour is desired.
Torsten
Torsten el 25 de En. de 2019
Editada: Torsten el 25 de En. de 2019
The result is not surprising to me.
While the loop works sequentially and already takes into account previously changed elements in the x-vector, the vectorized code gives the result of the following:
xold = x;
for t=2:length(x)
x(t) = xold(t-1) + xold(t);
end
Stephen23
Stephen23 el 25 de En. de 2019
Editada: Stephen23 el 25 de En. de 2019
"... except that I need to overwrite the values. That behaviour is desired."
As far as I can tell, all you need is cumsum:
>> x = [1,8,9,7,7,7,4];
>> for t = 2:length(x), x(t) = x(t-1)+x(t); end, x
x =
1 9 18 25 32 39 43
>> x = [1,8,9,7,7,7,4];
>> x = cumsum(x)
x =
1 9 18 25 32 39 43
And, in case you were wondering, vectorizing cumsum withthout the cumsum function is certainly possible, but it would not be particularly simple or particularly efficient. cumsum is the way to go (better than using a loop too).
Torsten
Torsten el 25 de En. de 2019
I think the given recursion was just an example. "cumsum" won't be applicable in a more general case, I guess.
Jan
Jan el 25 de En. de 2019
@Torsten: If cumsum does not match the needs, filter is more powerful. E.g. an emultaion of cumsum:
x = randi(10, 1, 10)
a = cumsum(x)
b = filter(1, [1,-1], x)
isequal(a,b)

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el 25 de En. de 2019

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Jan
el 25 de En. de 2019

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