网格滚动记忆超混沌振荡器的共存吸引子、振幅控制、电路实现及其在水下信号探测中的应用

IF 7.9 1区 工程技术 Q1 ENGINEERING, MECHANICAL
Yupeng Shen , Zhe Chen , Yaan Li , Weijia Li
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引用次数: 0

摘要

本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coexisting attractors, amplitude control, circuit implementation of grid-scroll memristive hyperchaotic oscillator and its application in underwater signal detection
Chaotic oscillators play an indispensable role in chaos-based engineering applications. This study proposes a novel grid-scroll memristive hyperchaotic system with infinite equilibrium points and applies it to weak signal detection. First, a novel controllable grid-scroll memristive hyperchaotic system with multi-dimensional extended attractors is designed based on the smooth flux-controlled non-volatile memristor and the piecewise linear function. The system can generate n × n-scroll hyperchaotic attractors in y and z dimensions, with each independent attractor exhibits a similar topological structure. The linear offset switch induced by the piecewise linear function enables the infinite extension of the attractor. Numerical analysis demonstrates that the system has infinitely coexisting single-scroll and multi-scroll attractors, while a built-in parameter enabling global amplitude control is also validated. The analog circuit of the grid-scroll hyperchaotic system is implemented to validate its practical applicability. Then, based on the 2 × 2-scroll hyperchaotic oscillator, combined with the complete empirical mode decomposition with adaptive noise (CEEMDAN) and Hilbert transform, a new underwater acoustic signal detection model is constructed. Compared with the traditional detection models, the designed model not only exhibits higher sensitivity to periodic signals, stronger immunity to various noises, but also easier to distinguish the state changes of the attractor. The experimental results demonstrate that the minimum detection SNR of the detection model can reach −63 dB, and the accuracy of frequency extraction exceeds 99.9 %. The successful detection of ship radiated noise confirms the engineering feasibility of the proposed model.
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来源期刊
Mechanical Systems and Signal Processing
Mechanical Systems and Signal Processing 工程技术-工程:机械
CiteScore
14.80
自引率
13.10%
发文量
1183
审稿时长
5.4 months
期刊介绍: Journal Name: Mechanical Systems and Signal Processing (MSSP) Interdisciplinary Focus: Mechanical, Aerospace, and Civil Engineering Purpose:Reporting scientific advancements of the highest quality Arising from new techniques in sensing, instrumentation, signal processing, modelling, and control of dynamic systems
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