On the Security of Optical Ciphers Under the Architecture of Compressed Sensing Combining With Double Random Phase Encoding

This work investigates the security of optical ciphers integrating compressed sensing (CS) with double random phase encoding. Theoretical analysis demonstrates that the combined system, regardless of the implementation order of the two procedures, can be normalized as a single CS projection process,...

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Main Authors: Junxin Chen, Yushu Zhang, Leo Yu Zhang
Format: Article
Language:English
Published: IEEE 2017-01-01
Series:IEEE Photonics Journal
Subjects:
Online Access:https://ieeexplore.ieee.org/document/7959050/
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author Junxin Chen
Yushu Zhang
Leo Yu Zhang
author_facet Junxin Chen
Yushu Zhang
Leo Yu Zhang
author_sort Junxin Chen
collection DOAJ
description This work investigates the security of optical ciphers integrating compressed sensing (CS) with double random phase encoding. Theoretical analysis demonstrates that the combined system, regardless of the implementation order of the two procedures, can be normalized as a single CS projection process, whose equivalent measurement matrix can be recovered by plaintext attack. The proved restricted isometry property of the equivalent measurement matrices further renders the adversary great convenience to recover the plaintext with only a single-step I<sub>1</sub> optimization. Computer simulations are also carried out for verification.
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spelling doaj.art-cafdda2e22dc4f7591fc2eb95412502d2022-12-21T23:01:56ZengIEEEIEEE Photonics Journal1943-06552017-01-019411110.1109/JPHOT.2017.27169617959050On the Security of Optical Ciphers Under the Architecture of Compressed Sensing Combining With Double Random Phase EncodingJunxin Chen0Yushu Zhang1Leo Yu Zhang2Sino-Dutch Biomedical and Information Engineering School, Northeastern University, Shenyang, ChinaSchool of Information Technology, Deakin University, Burwood, Vic., AustraliaSchool of Information Technology, Jinan University, Guangzhou, ChinaThis work investigates the security of optical ciphers integrating compressed sensing (CS) with double random phase encoding. Theoretical analysis demonstrates that the combined system, regardless of the implementation order of the two procedures, can be normalized as a single CS projection process, whose equivalent measurement matrix can be recovered by plaintext attack. The proved restricted isometry property of the equivalent measurement matrices further renders the adversary great convenience to recover the plaintext with only a single-step I<sub>1</sub> optimization. Computer simulations are also carried out for verification.https://ieeexplore.ieee.org/document/7959050/Imaging systemsoptical encryption and authentication
spellingShingle Junxin Chen
Yushu Zhang
Leo Yu Zhang
On the Security of Optical Ciphers Under the Architecture of Compressed Sensing Combining With Double Random Phase Encoding
IEEE Photonics Journal
Imaging systems
optical encryption and authentication
title On the Security of Optical Ciphers Under the Architecture of Compressed Sensing Combining With Double Random Phase Encoding
title_full On the Security of Optical Ciphers Under the Architecture of Compressed Sensing Combining With Double Random Phase Encoding
title_fullStr On the Security of Optical Ciphers Under the Architecture of Compressed Sensing Combining With Double Random Phase Encoding
title_full_unstemmed On the Security of Optical Ciphers Under the Architecture of Compressed Sensing Combining With Double Random Phase Encoding
title_short On the Security of Optical Ciphers Under the Architecture of Compressed Sensing Combining With Double Random Phase Encoding
title_sort on the security of optical ciphers under the architecture of compressed sensing combining with double random phase encoding
topic Imaging systems
optical encryption and authentication
url https://ieeexplore.ieee.org/document/7959050/
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AT leoyuzhang onthesecurityofopticalciphersunderthearchitectureofcompressedsensingcombiningwithdoublerandomphaseencoding