Introduction to Linear Dynamical Systems Professor Stephen Boyd, of the Electrical Engineering department at Stanford University, lectures on linear functions for the course, Introduction to Linear Dynamical Systems (EE263). Introduction to applied linear algebra and linear dynamical systems, with applications to circuits, signal processing, communications, and control systems. Topics include: Least-squares aproximations of over-determined equations and least-norm solutions of underdetermined equations. Symmetric matrices, matrix norm and singular value decomposition. Eigenvalues, left and right eigenvectors, and dynamical interpretation. Matrix exponential, stability, and asymptotic behavior. Multi-input multi-output systems, impulse and step matrices; convolution and transfer matrix descriptions. Complete Playlist for the Course: http://www.youtube.com/view_play_list?p=06960BA52D0DB32B EE 263 Course Website: http://www.stanford.edu/class/ee263/ Stanford University: http://www.stanford.edu/ Stanford University Channel on YouTube: http://www.youtube.com/stanford/
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Channels: Physics (General)
Tags: science electrical engineering technology linear dynamical system vector matrix Fourier transform gain factor signal circuit function research
Uploaded by: stanfordlinear ( Send Message ) on 29-08-2012.
Duration: 65m 52s
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Lec 1 - Introduction to Linear Dynamical Systems
Lec 3 - Introduction to Linear Dynamical Systems
Lec 4 - Introduction to Linear Dynamical Systems
Lec 5 - Introduction to Linear Dynamical Systems
Introduction to Linear Dynamical Systems
Lec 7 - Introduction to Linear Dynamical Systems
Lec 8 - Introduction to Linear Dynamical Systems
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Lec 10 - Introduction to Linear Dynamical Systems
Lec 11 - Introduction to Linear Dynamical Systems
Lec 12 - Introduction to Linear Dynamical Systems
Lec 13 - Introduction to Linear Dynamical Systems
Lec 14 - Introduction to Linear Dynamical Systems
Lec 15 - Introduction to Linear Dynamical Systems
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Lec 17 - Introduction to Linear Dynamical Systems
Lec 18 - Introduction to Linear Dynamical Systems