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基于人体对人体网络中混沌压缩感知的安全高效数据传输系统

Secure and Energy-Efficient Data Transmission System Based on Chaotic Compressive Sensing in Body-to-Body Networks.

作者信息

Peng Haipeng, Tian Ye, Kurths Jurgen, Li Lixiang, Yang Yixian, Wang Daoshun

出版信息

IEEE Trans Biomed Circuits Syst. 2017 Jun;11(3):558-573. doi: 10.1109/TBCAS.2017.2665659. Epub 2017 May 19.

DOI:10.1109/TBCAS.2017.2665659
PMID:28489549
Abstract

Applications of wireless body area networks (WBANs) are extended from remote health care to military, sports, disaster relief, etc. With the network scale expanding, nodes increasing, and links complicated, a WBAN evolves to a body-to-body network. Along with the development, energy saving and data security problems are highlighted. In this paper, chaotic compressive sensing (CCS) is proposed to solve these two crucial problems, simultaneously. Compared with the traditional compressive sensing, CCS can save vast storage space by only storing the matrix generation parameters. Additionally, the sensitivity of chaos can improve the security of data transmission. Aimed at image transmission, modified CCS is proposed, which uses two encryption mechanisms, confusion and mask, and performs a much better encryption quality. Simulation is conducted to verify the feasibility and effectiveness of the proposed methods. The results show that the energy efficiency and security are strongly improved, while the storage space is saved. And the secret key is extremely sensitive, [Formula: see text] perturbation of the secret key could lead to a total different decoding, the relative error is larger than 100%. Particularly for image encryption, the performance of the modified method is excellent. The adjacent pixel correlation is smaller than 0.04 in different directions including horizontal, vertical, and diagonal; the entropy of the cipher image with a 256-level gray value is larger than 7.98.

摘要

无线体域网(WBAN)的应用范围已从远程医疗保健扩展到军事、体育、救灾等领域。随着网络规模的扩大、节点的增加以及链路的复杂化,WBAN逐渐演变成人体对人体的网络。随着其发展,节能和数据安全问题日益突出。本文提出了混沌压缩感知(CCS)来同时解决这两个关键问题。与传统压缩感知相比,CCS只需存储矩阵生成参数就能节省大量存储空间。此外,混沌的敏感性可以提高数据传输的安全性。针对图像传输,提出了改进的CCS,它使用混淆和掩码两种加密机制,加密质量更好。通过仿真验证了所提方法的可行性和有效性。结果表明,所提方法在提高能量效率和安全性的同时节省了存储空间。并且密钥极其敏感,密钥的[公式:见原文]扰动会导致完全不同的解码,相对误差大于100%。特别是对于图像加密,改进方法的性能优异。在水平、垂直和对角线等不同方向上,加密图像的相邻像素相关性小于0.04;具有256级灰度值的加密图像的熵大于7.98。

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