Difference between revisions of "CDS course discussion, Apr 2014"

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===== Mathematics =====
===== Optimization and linear algebra =====
 
 
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'''Linear Algebra & Applied Operator Theory'''
 
'''Linear Algebra & Applied Operator Theory'''
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* Vector spaces, including Banach and Hilbert spaces
 
* Vector spaces, including Banach and Hilbert spaces
 
* Linear operators, dual spaces, decompositions
 
* Linear operators, dual spaces, decompositions
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<br>
 
'''Introduction to Optimization'''
 
'''Introduction to Optimization'''
 
* ACM 113 (Doyle, Owhadi, Tropp)
 
* ACM 113 (Doyle, Owhadi, Tropp)
 
* Convex analysis
 
* Convex analysis
 
* Linear programming/duality
 
* Linear programming/duality
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===== [[Stochastic systems courses|Stochastic systems]] =====
 
===== [[Stochastic systems courses|Stochastic systems]] =====
 
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* ACM/EE 116 (Hassibi, Owhadi, Tropp)
 
* ACM/EE 116 (Hassibi, Owhadi, Tropp)
 
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'''Markov Chains, Discrete Stochastic Processes and Applications'''
 
'''Markov Chains, Discrete Stochastic Processes and Applications'''
 
* ACM 216 (Owhadi, Tropp)
 
* ACM 216 (Owhadi, Tropp)
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'''Stochastic Inference'''
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* ACM 218 (Chandrasekaran)
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* CDS 150 (Beck)
 
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Revision as of 15:06, 11 April 2014

Track Fall Winter Spring
Mathematics

Linear Algebra & Applied Operator Theory

  • ACM 104/CDS 201 (Beck, Murray, Owhadi)
  • Vector spaces, including Banach and Hilbert spaces
  • Linear operators, dual spaces, decompositions


Introduction to Optimization

  • ACM 113 (Doyle, Owhadi, Tropp)
  • Convex analysis
  • Linear programming/duality
Stochastic systems

Introduction to Stochastic Processes and Modeling

  • ACM/EE 116 (Hassibi, Owhadi, Tropp)

Markov Chains, Discrete Stochastic Processes and Applications

  • ACM 216 (Owhadi, Tropp)

Stochastic Inference

  • ACM 218 (Chandrasekaran)
  • CDS 150 (Beck)
Robust Control

Modern Control Theory

  • CDS 212 (Doyle, Low, Murray)
  • Dynamics and stability in discrete and continuous time
  • Uncertainty and robustness
  • Fundamental limits: Bode, Shannon, Bode/Shannon

Algorithmic Game Theory

  • CS/Ec 241