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Uncertain chaotic behaviours of chaotic-based frequency- and phase-modulated signals

机译:基于混沌的频率和相位调制信号的不确定混沌行为

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摘要

Chaotic signals showmany advantages in the application of radar systems. The technique described in this study focuses on the chaotic behaviour of the chaotic-based frequency- and phase-modulated signals. Chaotic-based frequency- and phase-modulated signals are introduced and analysed. Theoretical analysis points out that the initial chaotic map's phase structure is destroyed by frequency or phase modulation, which may be the direct reason that induces uncertain chaotic behaviours of the modulated signals based on chaos. Furthermore, a sufficient condition for chaotic maps to ensure the chaotic-based frequency-modulated signals remaining chaotic is discussed, and an initial sensitive correlation function for the chaotic-based phase-modulated signals is defined to estimate the possibility of chaotic behaviours remaining. Both theoretical analysis and computer simulation present the uncertain property of chaotic behaviours for chaotic-based signals, which induces better or worse signal performances depending on different chaotic maps and different signal modulation. It is also demonstrated that chaotic behaviours of the modulated signals based on chaos do not certainly provide satisfying performances for radar applications.
机译:混沌信号在雷达系统的应用中显示出许多优势。本研究中描述的技术着重于基于混沌的频率和相位调制信号的混沌行为。引入并分析了基于混沌的频率和相位调制信号。理论分析指出,初始混沌图的相位结构受到频率或相位调制的破坏,这可能是引起基于混沌的调制信号的不确定混沌行为的直接原因。此外,讨论了用于混沌图以确保基于混沌的频率调制信号保持混沌的充分条件,并且定义了基于混沌的相位调制信号的初始敏感相关函数以估计残留混沌行为的可能性。理论分析和计算机仿真均显示了基于混沌的信号的混沌行为的不确定性,这取决于不同的混沌图和不同的信号调制会导致更好或更差的信号性能。还证明了基于混沌的调制信号的混沌行为不一定能为雷达应用提供令人满意的性能。

著录项

  • 来源
    《Signal Processing, IET》 |2011年第8期|p.748-756|共9页
  • 作者单位

    Research Institute of Space Electronics Information Technology in Electronics Science and Engineering School, National University of Defense Technology, Changsha 410073, Hu??nan, People's Republic of China;

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  • 正文语种 eng
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