# Solving equations in .NET

I'm trying to solve some simple equations in .NET. I came across Math.NET and evaluate it. The `Solver()` methods seemed to be what I need but I can't figure out how to use side conditions with this method.

To illustrate my problem I will give you a sample:

``````Given:
0 <= a_i <= 100
0 <= b <= 100
0 <= c
a_i, b and c are given

x_1, ..., x_n should be optimized

f(x) = x_1*a_1 + x_2*a_2 + ... + x_n*a_n = b

Side conditions:
g(x) = x_1 + x_2 + ... + x_n = c
0 <= x_i
``````

Is it possible to solve such a problem using the solve method or any other component of Math.NET or do you know any (free for commercial use) .NET library that can be used for solving this? I wouldn't like to write an algorithm for such a common problem by myself.

Best regards & thanks in advance

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possible duplicate of Free Optimization Library in C# –  duffymo Sep 30 '11 at 14:04

You need an optimizer with constraints like simplex method or Marquardt non-linear optimization.

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the problem looks rather linear to me ;) - right from the book, Simplex or interior Points are both fine for this - but is this really a answer? –  Carsten Sep 30 '11 at 14:11
You can't find what you're looking for unless you know its name. –  duffymo Sep 30 '11 at 14:31
I finally decided to port my Simplex I wrote once at university to NET, works fine :) –  Jay Dec 3 '11 at 1:45
Nice work. I'm glad it worked out for you. –  duffymo Dec 3 '11 at 2:06

IMHO Microsoft Solver Foundation is the way to go for this. The Express Version is free AFAIK and powerful enough for most smaller applications.

As I see now the Express Version is only indented for exploration - but there is (now?) a Standard-Lib for MSDN subscribers so I don't remove this post yet, as you might have a MSDN subscribtion.

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ALGLIB is great for these tasks. Check out their page on constrained optimization.

EDIT: It has both a free license (GPL) and a commercial license starting from \$370.

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thank - didn't check on this for some time - +1 for the reminder ;) –  Carsten Sep 30 '11 at 14:02