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  4. Innamark: A Whitespace Replacement Information-Hiding Method
 
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2025
Journal Article
Title

Innamark: A Whitespace Replacement Information-Hiding Method

Abstract
Large language models (LLMs) have gained significant popularity in recent years. Differentiating between a text written by a human and one generated by an LLM has become almost impossible. Information-hiding techniques such as digital watermarking or steganography can help by embedding information inside text in a form that is unlikely to be noticed. However, existing techniques, such as linguistic-based or format-based methods, change the semantics or cannot be applied to pure, unformatted text. In this paper, we introduce a novel method for information hiding called Innamark, which can conceal any byte-encoded sequence within a sufficiently long cover text. This method is implemented as a multi-platform library using the Kotlin programming language, which is accompanied by a command-line tool and a web interface. By substituting conventional whitespace characters with visually similar Unicode whitespace characters, our proposed scheme preserves the semantics of the cover text without changing the number of characters. Furthermore, we propose a specified structure for secret messages that enables configurable compression, encryption, hashing, and error correction. An experimental benchmark comparison on a dataset of 1 000 000 Wikipedia articles compares ten algorithms. The results demonstrate the robustness of our proposed Innamark method in various applications and the imperceptibility of its watermarks to humans. We discuss the limits to the embedding capacity and robustness of the algorithm and how these could be addressed in future work.
Author(s)
Hellmeier, Malte  orcid-logo
Fraunhofer-Institut für Software- und Systemtechnik ISST  
Norkowski, Hendrik
Montsecure GmbH
Schrewe, Ernst-Christoph
Fraunhofer-Institut für Software- und Systemtechnik ISST  
Qarawlus, Haydar Khalid Haydar  orcid-logo
Fraunhofer-Institut für Software- und Systemtechnik ISST  
Howar, Falk  
Fraunhofer-Institut für Software- und Systemtechnik ISST  
Journal
IEEE access  
Open Access
DOI
10.1109/ACCESS.2025.3583591
Additional link
Full text
Language
English
Fraunhofer-Institut für Software- und Systemtechnik ISST  
Keyword(s)
  • Blind watermarking

  • copyright protection

  • data hiding

  • data sovereignty

  • digital text watermarking

  • information hiding

  • steganography

  • Unicode characters

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