alexa An optimization network for solving a set of simultaneous linear equations Purchase or Sign In
Engineering

Engineering

Journal of Information Technology & Software Engineering

Author(s): K Chakraborty, K Mehrotta, CK Mohan, S Ranka

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A network for solving systems of simultaneous linear equations based on Hopfield's neural network model with continuous, real-valued outputs is described. The network is composed of highly interconnected simple neurons with a linear transfer function at each node. It is guaranteed to converge to a correct solution for all solvable systems of equations irrespective of the choice of the node transfer function; the use of complex nonlinearities at the nodes only affects the network convergence time. When a system which admits a solution is given as input, the network converges spontaneously and rapidly to a very accurate solution in all cases. When an unsolvable system is provided as input, the network outputs fail to converge and make the energy function close to zero even after a very large number of iterations.

This article was published in Neural Networks and referenced in Journal of Information Technology & Software Engineering

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