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Article type: Research Article
Authors: Zhang, Yalinga; b; * | Liu, Hongweia
Affiliations: [a] School of Mathematics and Statistics, Xidian University, Xi’an, China | [b] School of Computer Science, Xi’an Science and Technology University, Xi’an, China
Correspondence: [*] Corresponding author. Yaling Zhang, School of Mathematics and Statistics, Xidian University, Xi’an, China. E-mail: zyldella@126.com.
Abstract: A new projection neural network approach is presented for the linear and convex quadratic second-order cone programming. In the method, the optimal conditions of the linear and convex second-order cone programming are equivalent to the cone projection equations. A Lyapunov function is given based on the G-norm distance function. Based on the cone projection function, the descent direction of Lyapunov function is used to design the new projection neural network. For the proposed neural network, we give the Lyapunov stability analysis and prove the global convergence. Finally, some numerical examples and two kinds of grasping force optimization problems are used to test the efficiency of the proposed neural network. The simulation results show that the proposed neural network is efficient for solving some linear and convex quadratic second-order cone programming problems. Especially, the proposed neural network can overcome the oscillating trajectory of the exist projection neural network for some linear second-order cone programming examples and the min-max grasping force optimization problem.
Keywords: Second-order cone programming, G-norm distance function, Neural network, Dynamic differential equation
DOI: 10.3233/JIFS-210164
Journal: Journal of Intelligent & Fuzzy Systems, vol. 42, no. 4, pp. 2925-2937, 2022
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