We consider the problem of secure and reliable communication over a noisy multipath network. Previous work considering a noiseless version of our problem proposed a hybrid universal network coding cryptosystem (HUNCC). By combining an information-theoretically secure encoder together with partial encryption, HUNCC is able to obtain security guarantees, even in the presence of an all-observing eavesdropper. In this paper, we propose a version of HUNCC for noisy channels (N-HUNCC). This modification requires four main novelties. First, we present a network coding construction which is jointly, individually secure and error-correcting. Second, we introduce a new security definition which is a computational analogue of individual security, which we call individual indistinguishability under chosen ciphertext attack (individual IND-CCA1), and show that NHUNCC satisfies it. Third, we present a noise based decoder for N-HUNCC, which permits the decoding of the encoded-thenencrypted data. Finally, we discuss how to select parameters for N-HUNCC and its error-correcting capabilities.
翻译:我们考虑的是在一个吵闹的多路网络上安全可靠的通信问题。以前,在考虑一个无噪音版本的问题时,提出了一个混合的通用网络编码密码系统(HUNCC)。通过将信息-理论安全的编码器与部分加密结合起来,HUNCC能够获得安全保障,即使有一位全能的窃听器在场。在本文中,我们提议了一个用于噪音频道的HUNCC版本(N-HUNCC)。这一修改需要四个主要的新颖之处。首先,我们提出了一个网络编码结构,这个结构是联合的,单个的安全和纠正错误的。第二,我们引入一个新的安全定义,这是个人安全的计算模拟,我们称之为个人在选定的密码攻击(个人ID-CC1)下不可分辨性,并表明NHUNCC满足了这一点。第三,我们为N-HUNCC提出了一个基于噪音的解码解码器,允许解码-加密数据。最后,我们讨论如何为N-HUNCC及其错误校正能力选择参数。