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A High-Capacity Steganography Scheme for JPEG2000 Baseline System

机译:JPEG2000基线系统的大容量隐写方案

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摘要

Hiding capacity is very important for efficient covert communications. For JPEG2000 compressed images, it is necessary to enlarge the hiding capacity because the available redundancy is very limited. In addition, the bitstream truncation makes it difficult to hide information. In this paper, a high-capacity steganography scheme is proposed for the JPEG2000 baseline system, which uses bit-plane encoding procedure twice to solve the problem due to bitstream truncation. Moreover, embedding points and their intensity are determined in a well defined quantitative manner via redundancy evaluation to increase hiding capacity. The redundancy is measured by bit, which is different from conventional methods which adjust the embedding intensity by multiplying a visual masking factor. High volumetric data is embedded into bit-planes as low as possible to keep message integrality, but at the cost of an extra bit-plane encoding procedure and slightly changed compression ratio. The proposed method can be easily integrated into the JPEG2000 image coder, and the produced stego-bitstream can be decoded normally. Simulation shows that the proposed method is feasible, effective, and secure.
机译:隐藏容量对于有效的秘密通信非常重要。对于JPEG2000压缩图像,由于可用的冗余非常有限,因此有必要扩大隐藏容量。另外,比特流截断使得难以隐藏信息。本文提出了一种针对JPEG2000基线系统的大容量隐写方案,该方案使用两次位平面编码过程来解决由于位流截断而引起的问题。此外,嵌入点及其强度是通过冗余评估以明确定义的定量方式确定的,以增加隐藏能力。冗余是按位测量的,这与传统方法不同,后者通过乘以视觉掩盖因子来调整嵌入强度。高容量的数据尽可能低地嵌入到位平面中,以保持消息的完整性,但是要付出额外的位平面编码过程和稍微改变压缩率的代价。所提出的方法可以很容易地集成到JPEG2000图像编码器中,并且所产生的隐身比特流可以正常解码。仿真表明,该方法是可行,有效和安全的。

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