Finite-time stabilization and energy consumption estimation for delayed neural networks with bounded activation function.

Chen, Chongyang; Zhu, Song; Wang, Min; Yang, Chunyu; Zeng, Zhigang · Neural Netw · 2020

basic_science · Level V

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Abstract

This paper concentrates on finite-time stabilization and energy consumption estimation for one type of delayed neural networks (DNNs) with bounded activation function. Under the bounded activation function condition and using the comparison theorem, a new switch controller is proposed to ensure the finite-time stability of the considered DNNs. Furthermore, the energy consumption produced in system controlling is estimated by inequality techniques. We generalize the previous results about the problem of finite-time stabilization and energy consumption estimation for neural networks. Ultimately, two numerical simulations are carried out to verify the validity of our results.

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