Secure spread spectrum watermarking for images, audio and video

Ingemar J. Cox, Joe Kilian, T.G. Leighton, T. Shamoon

2002 · 503 citations · 9 references

Concepts

TL;DR

Watermarking must target perceptually significant components to ensure robustness, yet altering these components can degrade signal quality. The study proposes a spread‑spectrum digital watermarking technique that embeds a narrow‑band signal into the spectral components of audio, image, and video data. The method embeds the watermark as a narrow‑band spread‑spectrum signal in the data’s spectral domain, and is resilient to common distortions such as conversion, resampling, compression, and geometric transformations, while being applicable to audio, image, and video with minimal changes. Experiments show the watermark is hard to remove even with collusion, reliably identifies the owner, and makes counterfeiting nearly impossible, confirming the method’s robustness.

Abstract

We describe a digital watermarking method for use in audio, image, video and multimedia data. We argue that a watermark must be placed in perceptually significant components of a signal if it is to be robust to common signal distortions and malicious attack. However, it is well known that modification of these components can lead to perceptual degradation of the signal. To avoid this, we propose to insert a watermark into the spectral components of the data using techniques analogous to spread spectrum communications, hiding a narrow band signal in a wideband channel that is the data. The watermark is difficult for an attacker to remove, even when several individuals conspire together with independently watermarked copies of the data. It is also robust to common signal and geometric distortions such as digital-to-analog and analog-to-digital conversion, resampling, quantization, dithering, compression, rotation, translation, cropping and scaling. The same digital watermarking algorithm can be applied to all three media under consideration with only minor modifications, making it especially appropriate for multimedia products. Retrieval of the watermark unambiguously identifies the owner, and the watermark can be constructed to make counterfeiting almost impossible. We present experimental results to support these claims.

References

9