See this document in CiteSeerX!

Cooperative Coevolution: An Architecture for Evolving Coadapted Subcomponents (2000)  (Make Corrections)  (34 citations)
Mitchell A. Potter, Kenneth A. De Jong
Evolutionary Computation



  Home/Search   Context   Related

 
View or download:
mit.edu/journals/EVCO/Potter.pdf
Cached:  PS.gz  PS  PDF   Image  Update  Help

From:  mit.edu/journals...samplearticle (more)
(Enter author homepages)

Rate this article: (best)
  Comment on this article  
(Enter summary)

Abstract: To successfully apply evolutionary algorithms to the solution of increasingly complex problems, we must develop effective techniques for evolving solutions in the form of interacting coadapted subcomponents. One of the major difficulties is finding computational extensions to our current evolutionary paradigms that will enable such subcomponents to "emerge" rather than being hand designed. In this paper, we describe an architecture for evolving such subcomponents as a collection of... (Update)

Cited by:   More
MOGE: GP Classification Problem Decomposition using - Multi-Objective..   (Correct)
The Parallel Nash Memory for Asymmetric Games - Oliehoek, de Jong, Vlassis (2006)   (Correct)
Monotonic Solution Concepts in Coevolution - Ficici (2005)   (Correct)

Similar documents (at the sentence level):
17.4%:   Design and Analysis of a Computational Model of Cooperative.. - Potter (1997)   (Correct)

Active bibliography (related documents):   More   All
0.5:   Name Strategy: Its Existence and Implications - Roberts (2005)   (Correct)
0.5:   A Concurrent Implementation of the Cascade-Correlation.. - Paul Springer Jet   (Correct)
0.2:   Symbiotic Evolution of Neural Networks in Sequential Decision Tasks - Moriarty (1997)   (Correct)

Similar documents based on text:   More   All
0.8:   Cooperative Coevolution: An Architecture for Evolving.. - Mitchell Potter Navy (2000)   (Correct)
0.7:   The Jigsaw Model: An Explanation for the Evolution of Complex .. - Systems And The   (Correct)
0.4:   Overview of the Evolutionary Computation Toolkit - Mitchell Pott Er   (Correct)

Related documents from co-citation:   More   All
10:   Coevolutionary Computation - Paredis
7:   Improved fuzzy process control of spacecraft terminal rendezvous using a genetic.. (context) - Karr, Freeman et al. - 1990
7:   Fuzzy Evolutionary Computation (context) - Pedrycz - 1997

BibTeX entry:   (Update)

M. Potter and K. DeJong. Cooperative coevolution: An architecture for evolving coadapted subcomponents. Evolutionary Computation, 8(1):1--29, 2000. http://citeseer.ist.psu.edu/article/potter00cooperative.html   More

@article{ potter00cooperative,
    author = "Mitchell A. Potter and Kenneth A. De Jong",
    title = "Cooperative Coevolution: An Architecture for Evolving Coadapted Subcomponents",
    journal = "Evolutionary Computation",
    volume = "8",
    number = "1",
    pages = "1-29",
    year = "2000",
    url = "citeseer.ist.psu.edu/article/potter00cooperative.html" }
Citations (may not include all citations):
372   The cascade-correlation learning architecture - Fahlman, Lebiere - 1990
295   Some studies in machine learning using the game of checkers (context) - Samuel - 1959
205   Co-evolving parasites improve simulated evolution as an opti.. (context) - Hillis - 1991
185   Escaping brittleness: The possibilities of general purpose l.. (context) - Holland - 1986
76   Learning to tell two spirals apart (context) - Lang, Witbrock - 1988
58   A cooperative coevolutionary approach to function optimizati.. - Potter, De Jong - 1994
43   A coevolutionary approach to learning sequential decision ru.. - Potter, De Jong et al. - 1995
41   Methods for competitive co-evolution: Finding opponents wort.. - Rosin, Belew - 1995
36   Using genetic algorithms to explore pattern recognition in t.. - Forrest, Javornik et al. - 1993
35   Discovery of subroutines in genetic programming - Rosca, Ballard - 1996
28   Search-intensive concept induction - Giordana, Neri - 1996
27   Symbiotic Evolution of Neural Networks in Sequential Decisio.. - Moriarty - 1997
27   The roles of mutation (context) - Wright - 1932
27   Learning disjunctive concepts by means of genetic algorithms (context) - Giordana, Saitta et al. - 1994
25   Hierarchical self-organization in genetic programming - Rosca, Ballard - 1994
20   Genetic algorithms and the immune system (context) - Forrest, Perelson - 1990
17   Hierarchical automatic function definition in genetic progra.. - Koza - 1993
17   The symbiotic evolution of solutions and their representatio.. (context) - Paredis - 1995
16   Evolving neural networks with collaborative species - Potter, De Jong - 1995
16   Hierarchical learning of robot skills by reinforcement (context) - Lin - 1993
13   A genetic cascade-correlation learning algorithm - Potter - 1992
13   Forming neural networks through efficient and adaptive coevo.. - Moriarty, Miikkulainen - 1997
11   Searching for diverse (context) - Smith, Forrest et al. - 1993
2   Darwin's Finches (context) - Lack - 1947
2   Generalization in feed forward neural networks (context) - Whitley, Karunanithi - 1991
1   Comparison of artificial neural networks and traditional cla.. (context) - Suewatanakul, Himmelblau - 1992
1   Learning internal representations by error propagation (context) - Rumelhart, Hinton et al. - 1986
1   Character displacement (context) - Jr, Wilson - 1956



The graph only includes citing articles where the year of publication is known.


Documents on the same site (http://mitpress.mit.edu/journals/EVCO/sample-article.html):   More
Multiobjective Evolutionary Algorithms: Analyzing the.. - Van Veldhuizen, Lamont (2000)   (Correct)
Effects of Code Growth and Parsimony Pressure on Populations.. - Soule, Foster (1998)   (Correct)
Analysis of the (1,lambda)-ES on the Parabolic Ridge - Oyman, al.   (Correct)

Online articles have much greater impact   More about CiteSeer.IST   Add search form to your site   Submit documents   Feedback  

CiteSeer.IST - Copyright Penn State and NEC