10/01 - Vectors & Functions: Difference between revisions

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==Changing from one orthogonal Basis Functions to another==
==Changing from one orthogonal Basis Functions to another==
 
If you have a vector <math> \hat v </math>
*explain b_j

Revision as of 13:56, 9 November 2008

Vectors & Functions

  • How to related the vector v to the sampling?

We could sample a continuous function every T seconds, creating a "bar graph".

f(t)=∑i=0N−1f(iT)⏟coefficients⋅p(t−iT)⏟basisfunctions

  • Where p(t) is a rectangle 1 unit high and T units wide

In an effort to make this more exact, will will continue to shrink the rectangle down to the Dirac Delta function, δ

  • δ(x)={+∞,x=00,x≠0
  • ∫−∞∞δ(x)dx=1.

By using the Dirac Delta function the summation becomes an integral

f(t)=∫−∞∞f(u)⋅δ(t−u)du

Changing from one orthogonal Basis Functions to another

If you have a vector v^