Title :
Data Hiding Using Flexible Multi-bit MER
Author :
Rong-Jian Chen ; Yu-Cha Chen ; Jui-Lin Lai ; Shi-Jinn Horng
Author_Institution :
Dept. of Electron. Eng., Nat. United Univ., Miaoli, Taiwan
Abstract :
Multi-bit minimum error replacement (MER) is a method that can embed multi-bit logo/secret data into k least-significant bits (LSBs) of cover data only introduces minimum embedding error (MEE). However, k-LSBs MER suffers from weak robustness. Moreover, it is unfortunate because no literature discusses the formulations and the properties of multi-bit MEE up to this day. Therefore, this work proposes a novel new multi-bit MERs with flexible bit location (multi-bit MER_FBL) to overcome the problem of robustness. This work also illustrates the formulations and properties of MEEs in the multi-bit MER_FBL. The MEE can be easily and determinedly evaluated using the proposed formulations and properties. The proposed multi-bit MER_FBL embeds and hides multi-bit (k-bit, k≥1) logo/secret data into any adjoining (starting with the ith location) k-bit bibi-1⋯bi-k+1 of cover data only introduces MEE in the range 0 of ±(2k-1)2i-k; moreover, its flexible bit location enhances the embedded robustness as robustness increases as the order (location) of embedding bits increases. As the proposed multi-bit MER_FBL can embed multi-bit logo/secret data into any adjoining bits of cover data and has MEE and high robustness, this method was applied for the steganographic and watermarking applications and achieves good embedding quality.
Keywords :
steganography; watermarking; data hiding; embedding quality; flexible bit location; flexible multibit MER; k least-significant bits; k-LSB; minimum embedding error; multibit MEE; multibit MER_FBL; multibit logo/secret data; multibit minimum error replacement; steganographic applications; watermarking applications; Algorithm design and analysis; Hardware; Histograms; Robustness; Software; Three-dimensional displays; Watermarking; data hiding; flexible bit location; minimum-error replacement; multi-bit embedding; steganographgy; watermarking;
Conference_Titel :
Biometrics and Security Technologies (ISBAST), 2013 International Symposium on
Conference_Location :
Chengdu
Print_ISBN :
978-0-7695-5010-7
DOI :
10.1109/ISBAST.2013.7