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=Make a page about interpolating FIR filters. Take care to note how many multiply/add operations.
<math> \sum_{m=-M}^m a_{m}x[(r-m)T/2]=y(r) </math>


Using the class notes on November 1
The number of add/multiply operations is half the limits of the sumation above. Half results from only needing to perform calculations on half the data.
The are under the rth impulse function of the interpolated signal is


<math> y(t)= \sum_{r=-\infty}^\infty y(r)\delta (t- \left(\frac{\left(rt\right) }{2} \right)) </math>
<math>(2M+1)(1/2)\!</math>


For every T seconds, the number of add/multiply operations is
Substitute


<math>r/2=n =m/2\!</math>
<math>(2M+1)(1/2)\!</math>

in y(r) to get the result of the interpolating filter

<math> y(t)= \sum_{r=-\infty}^\infty y(r)\delta (t-rT/2) </math>

Revision as of 23:06, 1 December 2010

=Make a page about interpolating FIR filters. Take care to note how many multiply/add operations.

Using the class notes on November 1

The are under the rth impulse function of the interpolated signal is

For every T seconds, the number of add/multiply operations is