Abstract
Minimal Switching Graph (MSG) is a graphical model for the constrained via minimization problem - a combinatorial optimization problem in integrated circuit design automation. From a computational point of view, the problem is NP-complete. In this paper we present a new approach to the MSG problem using hybrid Estimation of Distribution Algorithms (EDAs). This approach uses a Univariate Marginal Distribution Algorithm (UMDA) to sample start search points and employs a hill-climbing algorithm to find a local optimum in the basins where the start search points are located. By making use of the efficient exploration of the UMDA and the effective exploitation of the hill-climbing algorithm, this hybrid EDA can find an optimal or near-optimal solution efficiently and effectively. The hybrid EDA has been implemented and compared with the UMDA and the hill-climbing algorithm. Experimental results show that the hybrid EDA significantly outperforms both the UMDA and the hill-climbing algorithm. © 2005 IEEE.
| Original language | English |
|---|---|
| Title of host publication | Proceedings - International Conference on Computational Intelligence for Modelling, Control and Automation |
| Subtitle of host publication | CIMCA 2005 |
| Publisher | IEEE |
| Pages | 708-713 |
| Volume | 1 |
| ISBN (Print) | 0769525040, 9780769525044 |
| DOIs | |
| Publication status | Published - Nov 2005 |
| Event | International Conference on Computational Intelligence for Modelling, Control and Automation, CIMCA 2005 and International Conference on Intelligent Agents, Web Technologies and Internet Commerce, IAWTIC 2005 - Vienna, Austria Duration: 28 Nov 2005 → 30 Nov 2005 https://ieeexplore.ieee.org/xpl/conhome/10869/proceeding |
Conference
| Conference | International Conference on Computational Intelligence for Modelling, Control and Automation, CIMCA 2005 and International Conference on Intelligent Agents, Web Technologies and Internet Commerce, IAWTIC 2005 |
|---|---|
| Place | Austria |
| City | Vienna |
| Period | 28/11/05 → 30/11/05 |
| Internet address |
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