Title :
An Approximate Algorithm for DCOP with Optimal Solution Attainment Rate of 0.99
Author_Institution :
Dept. of Math. Sci., Tokai Univ., Hiratsuka, Japan
Abstract :
Distributed constraint optimization problems (DCOP) have attracted attention as a means of resolving distribution problems in multiagent environments. The authors has proposed a multiplex method targeting the improved efficiency of a distributed nondeterministic approximate algorithm for distributed constraint optimization problems. The multiplex method targeting the improved efficiency of a distributed nondeterministic approximate algorithm have been proposed for distributed constraint optimization problems. Since much of the computation time is used to transmit messages, improving efficiency using a multiplex computation of distributed approximate algorithms might be feasible, presuming that the computation time of each node or a small change in message length has no direct impact. Although it is usually impossible to guarantee that the approximation algorithm can obtain the optimal solution, the authors managed to do so, using a theoretically determined multiplex method. In addition, the authors shows the feasibility of an optimal solution attainment rate of 0.99 by an experiment using a Distributed Stochastic Search Algorithm.
Keywords :
constraint theory; distributed algorithms; multi-agent systems; optimisation; probability; search problems; stochastic processes; DCOP; computation time; distributed constraint optimization problem; distributed nondeterministic approximate algorithm; distributed stochastic search algorithm; distribution problem; message length; message transmission; multiagent environment; multiplex computation; multiplex method; probability; Algorithm design and analysis; Approximation algorithms; Approximation methods; Constraint optimization; Distributed algorithms; Multiplexing; Probability distribution; Approximation algorithms;
Conference_Titel :
Software Engineering, Artificial Intelligence, Networking and Parallel & Distributed Computing (SNPD), 2012 13th ACIS International Conference on
Conference_Location :
Kyoto
Print_ISBN :
978-1-4673-2120-4
DOI :
10.1109/SNPD.2012.127