Laboratorio di Intelligenza Artificiale e Robotica
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1 Laboratorio di Intelligenza Artificiale e Robotica A.A
2 Outline 2 Machine Learning Unsupervised Learning Supervised Learning Reinforcement Learning Genetic Algorithms Genetics-Based Machine Learning Applications Computational Intelligence and Games Machine Learning for Embedded Systems Design
3 What is Machine Learning?
4 What is Machine Learning? 4 The field of machine learning is concerned with the question of how to construct computer programs that automatically improve with experience. Tom Mitchell (1997) A program is said to learn from experience E with respect to some class of tasks T and performance measure P, if its performance at tasks in T, as measured by P, improves with experience E. A well-defined learning task is defined by P, T, and E.
5 Example: checkers 5 Task T: playing checkers Artificial Intelligence Design and implement a computer-based system that exhibit intelligent action Machine Learning Write a program that can learn how to play It can learn from examples of previous games, by playing against another opponent, by playing against itself
6 Unsupervised Learning
7 7
8 Supervised Learning
9 What is an apple? 9
10 What is an apple? 10
11 Reinforcement Learning
12 RL framework 12 reward...delay state Agent action Environment
13 Optimal value function 13 The problem becomes learning how to maximize the amount of reward collected (payoff) Usually RL algorithms try to learn the action-value function Q(s,a) and derive from it the optimal policy
14 Genetic Algorithms
15 The population 15
16 Ranking by fitness 16
17 Mate Selection 17 Selection probability is proportional to fitness
18 Crossover 18 Exploit goodness of parents
19 Mutation 19 Explore unknown
20 Best solution 20
21 The GA recipe 21
22 Genetic Algorithms + Machine Learning = Genetic Based Machine Learning
23 Examples of GBML 23 Neuroevolution Classifiers structure and parameters optimization with GAs Feature selection with GAs Rule-based Evolutionary Systems GA-based approach for training classifiers
24 GBML projects 24 Goal Implementation of a GBML approach, or extension of an available implementation, or comparison of different approaches Experimental analysis Technical report Skills Basic Knowledge of EC and ML Good analysis capabilities Good programming skills (C++) Students: max 2
25 Computational Intelligence and Games
26 Why games? 26 Modern computer games are ideal benchmarks for computational intelligence techniques Inexpensive Challenging Computational intelligence could be useful for modern games Speedup AI design Improvement of AI Adaptive AI Customization of game content Neverwinter Nights Civilization II Unreal Tournament Urban Combat
27 Issues in CIG 27 CIG is an attractive field but involves several technical issues: Interface Experiments design Simulation speed Customization Documentation Typical benchmarks are specifically designed for doing research Modern computer games are very complex and with different goals
28 Projects available on TORCS 28 TORCS is an open source car racing simulator Well suited for CIG research Software API available Examples available Competitions Available projects Automated generation of tracks Visual input for TORCS C++ Learning API Learn your bot!
29 SmarTrack 29 Goal Generation, evaluation and classification of tracks for TORCS Skills Good programming skills (C++) Good analysis capabilities Basic knowledge of EC and/or ML Students: max 3 Reference
30 EyeBot 30 Goal Develop a TORCS controller based on visual inputs Skills Some knowledge/experience with computer vision is preferred Good programming skills (C++) Students: max 2 Reference
31 C++ Learning API 31 Goal Developing a learning framework for TORCS (partially as porting of an existing JAVA API) Skills Basic knowledge of EC and/or ML Good programming skills (C++) Students: max 2 Reference
32 Learn your bot! 32 Goal Apply any evolutionary computation or machine learning techniques to develop a controller for TORCS Provide the software, the controller and a presentation Skills Knowledge of EC and/or ML Good analysis capabilities Basic programming skills (C++) Students: max 1 Reference
33 Racing Games for CIG research 33 Goal Analysis of racing games for research purposes Comparison of different games Prototype and tutorial for a specific game Skills Good programming skill Good analysis capabilities Reference
34 Projects on Unreal Tournament 34 UT is a commercial FPS Easy to extend through UnrealScript GameBots API available for UT2004 Projects BotPrize Analysis and extension of GameBots
35 The Botprize 35 A Turing test for FPS bots! Goal Analysis of GameBots and of the state of the art Submit an entry to the competition Skills Good programming skills (Java) Strong commitment Students: 4-6 Deadlines Registration: Sunday 5 October Intermediate deadline: Friday 31 October Final deadline: 5 December Reference
36 GameBots for CIG research 36 Goal Analysis of GameBots for CIG research Extending GameBots Example of machine learning application Skills Good programming (Java) Knowledge of EC and ML Reference
37 Machine Learning For Embedded Systems Design
38 Overview 38 Embedded systems are today more and more complex There is need of automated tools to support their design We focus on Performance models Design space exploration for high level synthesis
39 Performance model 39 Goal Generation/analysis/pre-processing of the dataset Application of a supervised learning technique Experimental analysis Skills Good knowledge of ML Good analysis capabilities Reference Additional contact: Ing. Marco Lattuada, lattuada@elet.polimi.it
40 High Level Synthesis High-Level Synthesis means going from an algorithmic level specification of a behaviour of a digital system to a register level structure that implements that behavior. McFarland, et al., Proc. IEEE, February Resource Library Behavioral specification Design constraints Objectives Scheduling High-Level Synthesis tool Allocation Binding Datapath & Controller Controller Synthesis
41 EC approaches for HLS 41 Goal Integration of an EC-based optimization process into the HLS framework Experimental analysis Technical report Skills Good programming (C++) Good analysis capabilities Reference Additional contact: Ing. Christian Pilato,
42 Contacts 42 Web: Stanza 146, Primo Piano, DEI, Tel When and how to start? Have a look to the references in the slide Drop me an for additional info on a specific project Select one or two projects you are interested and send me an to arrange a meeting on them Ideal start of the projects would be first week of November
Laboratorio di Intelligenza Artificiale e Robotica
Laboratorio di Intelligenza Artificiale e Robotica A.A. 2008-2009 Outline 2 Machine Learning Unsupervised Learning Supervised Learning Reinforcement Learning Genetic Algorithms Genetics-Based Machine Learning
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