A modified fletcher-reeves-type derivative-free method for symmetric nonlinear equations

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Abstract

In this paper, we propose a descent derivative-free method for solving symmetric nonlinear equations. The method is an extension of the modified Fletcher-Reeves (MFR) method proposed by Zhang, Zhou and Li [25] to symmetric nonlinear equations. It can be applied to solve large-scale symmetric nonlinear equations due to lower storage requirement. An attractive property of the method is that the directions generated by the method are descent for the residual function. By the use of some backtracking line search technique, the generated sequence of function values is decreasing. Under appropriate conditions, we show that the proposed method is globally convergent. The preliminary numerical results show that the method is practically effective.

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Li, D. H., & Wang, X. L. (2011). A modified fletcher-reeves-type derivative-free method for symmetric nonlinear equations. Numerical Algebra, Control and Optimization, 1(1), 71–82. https://doi.org/10.3934/naco.2011.1.71

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