Evolutionary-Fragmentary Model of the Routing Problem

Author:

Kozin I. V.,Kryvtsun O. V.,Pinchuk V. P.

Publisher

Springer Science and Business Media LLC

Subject

General Computer Science

Reference10 articles.

1. A. Kernytskyy, R. Kryvyy, and S. Tkatchenko, “VLSI topology synthesis using the method of parallel genetic algorithms,” in: Proc. 3rd Intern. Conf. of Young Scientists MEMSTECH’2007, May 23–26, 2007, Polyana, Lviv (2007), pp. 151–152.

2. B. K. Lebedev and E. I. Voronin, “Genetic algorithm of the distribution of connecting layers for multilayered global routing of VLSI,” Izv. YuFU, Tekhn. Nauki, Special Issue: Intelligent CAD, 132, No. 7, 14–21 (2012).

3. L. A. Gladkov and S. N. Shcheglov, “Synthesis of the architecture of hybrid intelligent systems on the basis of self-organization and self-regulation principles,” in: Trans. of Intern. Conf. IEEE AIS’02 and ISAPR’2002, Fizmatlit, Moscow (2002), pp. 173–180.

4. D. Korpyljov, T. Sviridova, and S. Tkachenko, “Using of genetic algorithms in design of Hybrid Integrated Circuits,” in: Proc. 9th Intern. Conf. on the Experience of Designing and Application of CAD Systems in Microelectronics, February, 20–24, 2007, Polyana, Lviv (2007), p. 302.

5. J. Lienig, “Physical design of VLSI circuits,” in: D. Dasgupta and Z. Michalewicz (eds.), Evolutionary Algorithms in Engineering Applications, Springer, Berlin (1997), pp. 277–293.

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