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April 22, 2026Sensors0 citationsOpen Access

Modified Chaotic Hénon Map-Based Text Information Encryption and Hiding Mechanism Using Bottlenose Dolphin Vocalizations

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CLChin-Feng LinCHChing-Lung HsiehSCShun‐Hsyung Chang

Key Points

  • The main aim is to develop a secure encryption mechanism for transmitting text information using dolphin vocalizations.
  • Integrated a chaotic encryption scheme with spread spectrum technology and the modified chaotic Hénon map.
  • Used real bottlenose dolphin vocalizations to test the performance of the encryption mechanism.
  • Evaluated performance using modified amplitude correlation coefficient and unified average amplitude change intensity metrics.
  • Achieved high accuracy in de-hiding and decryption performance with correct parameters.
  • Showed 0% changing bit rates in successful correct scenarios indicating effective encryption and hiding.
  • Demonstrated the ability to recover test information completely when parameters matched, but significant errors in other configurations.

Abstract

As ocean resources are further developed and utilized, bionic covert underwater acoustic communication (CUAC) is increasingly important for military and underwater telemetry applications. The primary purpose of this study was to design a highly secure and undetectable text information (TI) encryption mechanism to realize CUAC using real bottlenose dolphin vocalizations (BDVs). For this purpose, a chaotic encryption scheme, spread spectrum (SS) technology, and a modified chaotic Hénon map (MCHM) were integrated into a TI encryption and hiding (EH) mechanism. Four BDVs and four test TIs were employed to demonstrate the performance of the proposed MCHM-based TI EH mechanism (MCHMTIEHM). The simulation results show that the MCHMTIEHM yields more accurate de-hiding and decryption results. When the correct encryption and decryption parameters were used, the test TI was completely recovered and could be recognized by humans. When the MCHM encryption and decryption parameters SPx and nI were not identical, tests involving TI01, TI02, TI03, and TI04 demonstrated correct de-hiding and error decryption performance; in particular, the test TI had superior correct de-hiding and error decryption results, was unrecoverable, and could not be recognized by the human eye. The modified amplitude correlation coefficient (ACC) and modified unified average amplitude change intensity (UACI) metrics were used to evaluate the hiding performance of MCHM-based encryption of TI using BDVs. The simulation results show that the average modified ACC and average UACI were 0.99995924 and 3.84 × 10−6, respectively. Performance was evaluated in terms of the average number of changing SS bit rates (NCSSBRs), the average number of changing bit rates (NCBRs), and the average number of changing character rates (NCCRs) for correct de-hiding and correct/erroneous TI decryption. The average NCSSBRs, NCBRs, and NCCRs were all 0% in correct de-hiding and encryption scenarios, while they were 49.29%, 47.65%, and 98.10%, respectively. with correct de-hiding and error-encryption scenarios. In summary, the proposed MCHMTIEHM yields superior encryption and hiding performance.

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Cite This Study

Lin et al. (2026) studied this question.

synapsesocial.com/papers/69e865126e0dea528dde9b6ahttps://doi.org/10.3390/s26082541
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