How to make inline function using for loop?

I need to make following function using "function handle"....
x=[x(1),x(2),x(3),...…,x(N)]……..Let say N=50
for i=1:1:N
fun(i)=@(x) 2*a + b + 4*c*d + 6*e %a, b ,c , d and e are iterative variables
end
a=[x(1),x(6),x(11),x(16),x(21),x(26),....,x(46)]
b=[x(2),x(7),x(12),x(17),x(22),x(27),.....x(47)]
c=[x(3),x(8),x(13),x(18),x(23),x(28),.....x(48)]
d=[x(4),x(9),x(14),x(19),x(24),x(29),.....x(49)]
e=[x(5),x(10),x(15),x(20),x(25),x(30),.....x(50)]
How can I write function using for loop?

2 Comments

Why are you storing the same calculated anonymous function N times?
Ultimately I use this function in "fmincon".....as an objective function...I tried other methods but could not find success.

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 Accepted Answer

fun = cell(N, 1);
F = @(x) 2*x(1:5:N) + x(2:5:N) + 4*x(3:5:N).*x(4:5:N) + 6*x(5:5:N);
fun(:) = {F};
Now fun stores N copies of the same function handle, each of which implements
@(x) 2*a + b + 4*c*d + 6*e
where a, b, c, d, e are short-hand for
a=[x(1),x(6),x(11),x(16),x(21),x(26),....,x(46)]
b=[x(2),x(7),x(12),x(17),x(22),x(27),.....x(47)]
c=[x(3),x(8),x(13),x(18),x(23),x(28),.....x(48)]
d=[x(4),x(9),x(14),x(19),x(24),x(29),.....x(49)]
e=[x(5),x(10),x(15),x(20),x(25),x(30),.....x(50)]
Each of the function handles will return a vector of length 50/5 = 10.

5 Comments

sorry for late reply...Thanks for the answer...I used this method previously....Can you please answer me following two questions.....(1) How can this function be used in fmincon? ….. (2) How can I evaluate function using feval? ...Kindly remember that there are 50 variables in my code...named as x(1), x(2),....,x(50)….Regards
You cannot use the function with fmincon because the objective function for fmincon needs to return a scalar.
Exactly...you are right....Is there any other way to deal with this type of situation?...
No. When your objective function returns a vector of results, then fmincon and most other minimizers are not appropriate. You would need something like gamultiobj() which tries to find pareto fronts.

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