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边信道攻击下香农密码系统的信息论安全

Information Theoretic Security for Shannon Cipher System under Side-Channel Attacks .

作者信息

Santoso Bagus, Oohama Yasutada

机构信息

University of Electro-Communications, 1-5-1 Chofugaoka, Tokyo 182-8585, Japan.

出版信息

Entropy (Basel). 2019 May 5;21(5):469. doi: 10.3390/e21050469.

Abstract

In this paper, we propose a new theoretical security model for Shannon cipher systems under side-channel attacks, where the adversary is not only allowed to collect ciphertexts by eavesdropping the public communication channel but is also allowed to collect the physical information leaked by the devices where the cipher system is implemented on, such as running time, power consumption, electromagnetic radiation, etc. Our model is very robust as it does not depend on the kind of physical information leaked by the devices. We also prove that in the case of one-time pad encryption, we can strengthen the secrecy/security of the cipher system by using an appropriate affine encoder. More precisely, we prove that for any distribution of the secret keys and any measurement device used for collecting the physical information, we can derive an achievable rate region for reliability and security such that if we compress the ciphertext using an affine encoder with a rate within the achievable rate region, then: (1) anyone with a secret key will be able to decrypt and decode the ciphertext correctly, but (2) any adversary who obtains the ciphertext and also the side physical information will not be able to obtain any information about the hidden source as long as the leaked physical information is encoded with a rate within the rate region. We derive our result by adapting the framework of the one helper source coding problem posed and investigated by Ahlswede and Körner (1975) and Wyner (1975). For reliability and security, we obtain our result by combining the result of Csizár (1982) on universal coding for a single source using linear codes and the exponential strong converse theorem of Oohama (2015) for the one helper source coding problem.

摘要

在本文中,我们针对旁道攻击下的香农密码系统提出了一种新的理论安全模型。在此模型中,对手不仅被允许通过窃听公共通信信道来收集密文,还被允许收集实现密码系统的设备所泄露的物理信息,如运行时间、功耗、电磁辐射等。我们的模型非常稳健,因为它不依赖于设备所泄露的物理信息的类型。我们还证明,在一次性密码本加密的情况下,我们可以通过使用适当的仿射编码器来增强密码系统的保密性/安全性。更确切地说,我们证明,对于秘密密钥的任何分布以及用于收集物理信息的任何测量设备,我们都可以推导出一个关于可靠性和安全性的可达速率区域。这样,如果我们使用一个速率在可达速率区域内的仿射编码器对密文进行压缩,那么:(1)任何拥有秘密密钥的人都能够正确地解密密文并进行解码,但是(2)任何获取了密文以及旁道物理信息的对手将无法获得关于隐藏源的任何信息,只要所泄露的物理信息是以速率区域内的速率进行编码的。我们通过改编由阿尔斯韦德(Ahlswede)和克纳(Körner)(1975年)以及怀纳(Wyner)(1975年)提出并研究的单辅助源编码问题的框架来得出我们的结果。对于可靠性和安全性,我们通过结合齐萨尔(Csizár)(1982年)关于使用线性码对单个源进行通用编码的结果以及大滨(Oohama)(2015年)针对单辅助源编码问题的指数强逆定理来获得我们的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6772/7514958/686e60b18544/entropy-21-00469-g001.jpg

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