Difference between revisions of "Publications"

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#  Bill Goodwine, Nonlinear Stability of Approximately Symmetric Large-Scale Systems.  Accepted for 2014 IFAC World Congress ([http://controls.ame.nd.edu/~bill/papers/2014/ifac14.pdf pdf])
 
#  Bill Goodwine, Nonlinear Stability of Approximately Symmetric Large-Scale Systems.  Accepted for 2014 IFAC World Congress ([http://controls.ame.nd.edu/~bill/papers/2014/ifac14.pdf pdf])
 +
# Ashley Nettleman and Bill Goodwine, ([http://controls.ame.nd.edu/~bill/papers/2014/mtns.pdf pdf])
 
# Bill Goodwine, Compositional Boundedness of Solutions for Symmetric Nonautonomous Control Systems.  Submitted to the 2014 Mediterranean Conference on Control and Automation  ([http://controls.ame.nd.edu/~bill/papers/2014/med14.pdf pdf])
 
# Bill Goodwine, Compositional Boundedness of Solutions for Symmetric Nonautonomous Control Systems.  Submitted to the 2014 Mediterranean Conference on Control and Automation  ([http://controls.ame.nd.edu/~bill/papers/2014/med14.pdf pdf])
 
# Bill Goodwine, Modeling a Multi-Robot System with Fractional-Order Differential Equations.  To appear in the proceedings of the 2014 IEEE International Conference on Robotics and Automation, Hong Kong ([http://controls.ame.nd.edu/~bill/papers/2014/icra14.pdf pdf])
 
# Bill Goodwine, Modeling a Multi-Robot System with Fractional-Order Differential Equations.  To appear in the proceedings of the 2014 IEEE International Conference on Robotics and Automation, Hong Kong ([http://controls.ame.nd.edu/~bill/papers/2014/icra14.pdf pdf])

Revision as of 14:20, 27 March 2014

I am getting around finally to the important job of listing all my papers here.

  1. Bill Goodwine, Nonlinear Stability of Approximately Symmetric Large-Scale Systems. Accepted for 2014 IFAC World Congress (pdf)
  2. Ashley Nettleman and Bill Goodwine, (pdf)
  3. Bill Goodwine, Compositional Boundedness of Solutions for Symmetric Nonautonomous Control Systems. Submitted to the 2014 Mediterranean Conference on Control and Automation (pdf)
  4. Bill Goodwine, Modeling a Multi-Robot System with Fractional-Order Differential Equations. To appear in the proceedings of the 2014 IEEE International Conference on Robotics and Automation, Hong Kong (pdf)