Coupled Oscillator: Hellie: Difference between revisions

From Class Wiki
Jump to navigation Jump to search
Line 87: Line 87:
\end{bmatrix}
\end{bmatrix}


+

\begin{bmatrix}
0&0&0&0 \\
0&0&0&0 \\
0&0&0&0 \\
0&0&0&0
\end{bmatrix}

\begin{bmatrix}
0\\
0\\
0\\
0
\end{bmatrix}


</math>
</math>
Line 114: Line 99:
::2) m1 and m2 oscillating at exactly a half period difference
::2) m1 and m2 oscillating at exactly a half period difference



::3) m1 and m2 oscillating at different times





Revision as of 19:01, 30 November 2009

Problem Statement

Write up on the Wiki a solution of a coupled oscillator problem like the coupled pendulum. Use State Space methods. Describe the eigenmodes of the system.

 Coupled Oscillator.jpg

Initial Conditions:

State Equations

=

With the numbers...


=


Eigenmodes

There are three eigenmodes for the system
1) m1 and m2 oscillating together
2) m1 and m2 oscillating at exactly a half period difference



Solve Using the Matrix Exponential



Written by: Andrew Hellie