Abstract

We have studied the dynamics of a chain of two unidirectionally coupled delay-feedback autooscillatory systems possessing smooth asymmetric amplitude characteristics and the initial conditions of opposite signs, which result in the formation of two basins of attraction in the chain. The results of numerical simulations of the process of chaotization in a driven autooscillatory system and the transition of its oscillations to a state of forced synchronization with a change in the basin of attraction are presented. The mechanism of chaotization is considered.

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