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Peter Merz: [Publications] [Author Rank by year] [Co-authors] [Prefers] [Cites] [Cited by]

Publications of Author

  1. Peter Merz, Katja Gorunova
    Efficient broadcast in P2P grids. [Citation Graph (0, 0)][DBLP]
    CCGRID, 2005, pp:237-242 [Conf]
  2. Thomas Fischer, Peter Merz
    Reducing the Size of Traveling Salesman Problem Instances by Fixing Edges. [Citation Graph (0, 0)][DBLP]
    EvoCOP, 2007, pp:72-83 [Conf]
  3. Steffen Wolf, Peter Merz
    A Hybrid Method for Solving Large-Scale Supply Chain Problems. [Citation Graph (0, 0)][DBLP]
    EvoCOP, 2007, pp:219-228 [Conf]
  4. Peter Merz
    A Comparison Of Memetic Recombination Operators For The Traveling Salesman Problem. [Citation Graph (0, 0)][DBLP]
    GECCO, 2002, pp:472-479 [Conf]
  5. Bernd Freisleben, Peter Merz
    A Genetic Local Search Algorithm for Solving Symmetric and Asymmetric Traveling Salesman Problems. [Citation Graph (0, 0)][DBLP]
    International Conference on Evolutionary Computation, 1996, pp:616-621 [Conf]
  6. Peter Merz, Bernd Freisleben
    A Genetic Local Search Approach to the Quadratic Assignment Problem. [Citation Graph (0, 0)][DBLP]
    ICGA, 1997, pp:465-472 [Conf]
  7. Peter Merz
    An Iterated Local Search Approach for Minimum Sum-of-Squares Clustering. [Citation Graph (0, 0)][DBLP]
    IDA, 2003, pp:286-296 [Conf]
  8. Thomas Fischer, Peter Merz
    A Distributed Chained Lin-Kernighan Algorithm for TSP Problems. [Citation Graph (0, 0)][DBLP]
    IPDPS, 2005, pp:- [Conf]
  9. Mathias Dalheimer, Franz-Josef Pfreundt, Peter Merz
    Agent-Based Grid Scheduling with Calana. [Citation Graph (0, 0)][DBLP]
    PPAM, 2005, pp:741-750 [Conf]
  10. Bernd Freisleben, Peter Merz
    New Genetic Local Search Operators for the Traveling Salesman Problem. [Citation Graph (0, 0)][DBLP]
    PPSN, 1996, pp:890-899 [Conf]
  11. Jutta Huhse, Thomas Villmann, Peter Merz, Andreas Zell
    Evolution Strategy with Neighborhood Attraction Using a Neural Gas Approach. [Citation Graph (0, 0)][DBLP]
    PPSN, 2002, pp:391-400 [Conf]
  12. Peter Merz, Bernd Freisleben
    Memetic Algorithms and the Fitness Landscape of the Graph Bi-Partitioning Problem. [Citation Graph (0, 0)][DBLP]
    PPSN, 1998, pp:765-774 [Conf]
  13. Peter Merz, Steffen Wolf
    Evolutionary Local Search for Designing Peer-to-Peer Overlay Topologies Based on Minimum Routing Cost Spanning Trees. [Citation Graph (0, 0)][DBLP]
    PPSN, 2006, pp:272-281 [Conf]
  14. Peter Merz, Andreas Zell
    Clustering Gene Expression Profiles with Memetic Algorithms. [Citation Graph (0, 0)][DBLP]
    PPSN, 2002, pp:811-820 [Conf]
  15. Peter Merz, Katja Gorunova
    Reliable Multicast and Its Probabilistic Model for Job Submission in Peer-to-Peer Grids. [Citation Graph (0, 0)][DBLP]
    WISE, 2005, pp:504-511 [Conf]
  16. Peter Merz, Bernd Freisleben
    Fitness Landscapes, Memetic Algorithms, and Greedy Operators for Graph Bipartitioning. [Citation Graph (0, 0)][DBLP]
    Evolutionary Computation, 2000, v:8, n:1, pp:61-91 [Journal]
  17. Peter Merz
    Advanced Fitness Landscape Analysis and the Performance of Memetic Algorithms. [Citation Graph (0, 0)][DBLP]
    Evolutionary Computation, 2004, v:12, n:3, pp:303-325 [Journal]
  18. Peter Merz, Bernd Freisleben
    Greedy and Local Search Heuristics for Unconstrained Binary Quadratic Programming. [Citation Graph (0, 0)][DBLP]
    J. Heuristics, 2002, v:8, n:2, pp:197-213 [Journal]
  19. Peter Merz, Bernd Freisleben
    Fitness landscape analysis and memetic algorithms for the quadratic assignment problem. [Citation Graph (0, 0)][DBLP]
    IEEE Trans. Evolutionary Computation, 2000, v:4, n:4, pp:337-352 [Journal]
  20. Steffen Wolf, Peter Merz
    Evolutionary Local Search for the Super-Peer Selection Problem and the p -Hub Median Problem. [Citation Graph (0, 0)][DBLP]
    Hybrid Metaheuristics, 2007, pp:1-15 [Conf]
  21. Thomas Fischer, Peter Merz
    A Memetic Algorithm for the Optimum Communication Spanning Tree Problem. [Citation Graph (0, 0)][DBLP]
    Hybrid Metaheuristics, 2007, pp:170-184 [Conf]
  22. Thomas Fischer, Stephan Fudeus, Peter Merz
    A Middleware for Job Distribution in Peer-to-Peer Networks. [Citation Graph (0, 0)][DBLP]
    PARA, 2006, pp:1147-1157 [Conf]
  23. Peter Merz, Katja Gorunova
    Fault-tolerant Resource Discovery in Peer-to-peer Grids. [Citation Graph (0, 0)][DBLP]
    J. Grid Comput., 2007, v:5, n:3, pp:319-335 [Journal]

  24. Formal Verification of a Grid Resource Allocation Protocol. [Citation Graph (, )][DBLP]


  25. On the Construction of a Super-Peer Topology underneath Middleware for Distributed Computing. [Citation Graph (, )][DBLP]


  26. Evolutionary Local Search for the Minimum Energy Broadcast Problem. [Citation Graph (, )][DBLP]


  27. Improved Construction Heuristics and Iterated Local Search for the Routing and Wavelength Assignment Problem. [Citation Graph (, )][DBLP]


  28. Iterated Local Search for Minimum Power Symmetric Connectivity in Wireless Networks. [Citation Graph (, )][DBLP]


  29. Efficient Cycle Search for the Minimum Routing Cost Spanning Tree Problem. [Citation Graph (, )][DBLP]


  30. Calana: a general-purpose agent-based grid scheduler. [Citation Graph (, )][DBLP]


  31. A New Iterative Method to Improve Network Coordinates-Based Internet Distance Estimation. [Citation Graph (, )][DBLP]


  32. Distributed Approximation Algorithms for Finding 2-Edge-Connected Subgraphs. [Citation Graph (, )][DBLP]


  33. A Simulation Framework for Distributed Super-Peer Topology Construction Using Network Coordinates. [Citation Graph (, )][DBLP]


  34. A Distributed Memetic Algorithm for the Routing and Wavelength Assignment Problem. [Citation Graph (, )][DBLP]


  35. An Iterated Local Search Approach for Finding Provably Good Solutions for Very Large TSP Instances. [Citation Graph (, )][DBLP]


  36. A Multilevel Approach for the Routing and Wavelength Assignment Problem. [Citation Graph (, )][DBLP]


  37. A Distributed Range Assignment Protocol. [Citation Graph (, )][DBLP]


  38. A Self-Organizing Super-Peer Overlay with a Chord Core for Desktop Grids. [Citation Graph (, )][DBLP]


  39. Super-Peer Selection in Peer-to-Peer Networks Using Network Coordinates. [Citation Graph (, )][DBLP]


  40. Nested Partitioning for the Minimum Energy Broadcast Problem. [Citation Graph (, )][DBLP]


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