Analysis of the structure of different optimization strategies

Author:

Zemliak Alexander,Espinosa-Garcia Jorge

Abstract

PurposeIn this paper, on the basis of a previously developed approach to circuit optimization, the main element of which is the control vector that changes the form of the basic equations, the structure of the control vector is determined, which minimizes CPU time.Design/methodology/approachThe circuit optimization process is defined as a controlled dynamic system with a special control vector. This vector serves as the main tool for generalizing the problem of circuit optimization and produces a huge number of different optimization strategies. The task of finding the best optimization strategy that minimizes processor time can be formulated. There is a need to find the optimal structure of the control vector that minimizes processor time. A special function, which is a combination of the Lyapunov function of the optimization process and its time derivative, was proposed to predict the optimal structure of the control vector. The found optimal positions of the switching points of the control vector give a large gain in CPU time in comparison with the traditional approach.FindingsThe optimal positions of the switching points of the components of the control vector were calculated. They minimize processor time. Numerical results are obtained for various circuits.Originality/valueThe Lyapunov function, which is one of the main characteristics of any dynamic system, is used to determine the optimal structure of the control vector, which minimizes the time of the circuit optimization process.

Publisher

Emerald

Subject

Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications

Reference23 articles.

1. A survey of optimization techniques for integrated-circuit design;Proceedings of the IEEE,1981

2. Doherty amplifier optimization using robust genetic algorithm and unscented transform;Proceedings of Annual IEEE Northeast Workshop CAS,2011

3. Artificial neural network for performance modeling and optimization of CMOS analog circuits;International Journal of Computer Applications,2012

4. On block elimination for sparse linear systems;SIAM Journal on Numerical Analysis,1984

5. Optimal design of a CMOS op-amp via geometric programming;IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems,2001

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