Matrix game (LP for game theory): Difference between revisions
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Steward: Wei-Han Chen, Fengqi You | Steward: Wei-Han Chen, Fengqi You | ||
== What is the Matrix Game? == | |||
* History and overview of Game Theory | |||
* Rationality, strategy, payout | |||
* Application to LP (minimax and duality) | |||
== Theory and Algorithmic Discussion == | |||
* Game Theory – Prisoner’s Dilemma | |||
* Stochastic Vector Introduction – Prisoner’s Dilemma with different probabilities | |||
* How this relates to Linear Programming | |||
* Minimax Theorem | |||
** Minimize the maximum payoff of opposing player | |||
* Duality Theorem | |||
== Numerical Example == | |||
* Fourth and Goal Dilemma | |||
* Offensive and defensive decisions and payoffs | |||
* Results | |||
== Other Applications of the Matrix Game == | |||
* Economics | |||
* War | |||
* Gambling | |||
* Intelligence and Foreign Policy | |||
== Conclusion == | |||
* TBD | |||
== References == | |||
* Add later |
Revision as of 02:21, 12 November 2020
Author: David Oswalt (SysEn 6800 Fall 2020)
Steward: Wei-Han Chen, Fengqi You
What is the Matrix Game?
- History and overview of Game Theory
- Rationality, strategy, payout
- Application to LP (minimax and duality)
Theory and Algorithmic Discussion
- Game Theory – Prisoner’s Dilemma
- Stochastic Vector Introduction – Prisoner’s Dilemma with different probabilities
- How this relates to Linear Programming
- Minimax Theorem
- Minimize the maximum payoff of opposing player
- Duality Theorem
Numerical Example
- Fourth and Goal Dilemma
- Offensive and defensive decisions and payoffs
- Results
Other Applications of the Matrix Game
- Economics
- War
- Gambling
- Intelligence and Foreign Policy
Conclusion
- TBD
References
- Add later