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Secret Matrix Lifecycle Management for Compressive Sensing based Cryptographic Mechanisms

机译:基于压缩感知的密码机制的秘密矩阵生命周期管理

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In Compressive Sensing (CS) -based cryptographic mechanisms, the measurement matrix is treated as a secret key, so that the encryption and/or the generation of authentication codes are performed during the compressed sampling process. Investigations on the complexity of the signal reconstruction without knowledge of the measurement matrix show that only key management is required to perform the above-mentioned cryptographic operations if the secret CS-matrix is used once for each signal. In standard cryptographic key management, only secret binary information is considered. In contrast, different secret measurement matrices may have different sizes, properties, and structures, depending on the characteristics of the input vector, the desired performance, the compressive sampling rate, and the expected reconstruction results. Therefore, an appropriate key management mechanism is required for secret CS-matrices. In this paper, the protection requirements and properties of the secret CS-matrix and its associated metadata are defined. Then, a high-level secret CS-matrix management architecture with the corresponding lifecycle are designed. The association between the secret measurement matrix, the associated metadata, and their management functions are discussed in our analysis.
机译:在基于压缩感测(CS)的密码机制中,将测量矩阵视为秘密密钥,以便在压缩采样过程中执行加密和/或生成验证码。在不了解测量矩阵的情况下对信号重构的复杂性进行的研究表明,如果对每个信号仅使用秘密CS矩阵,则只需要密钥管理即可执行上述加密操作。在标准加密密钥管理中,仅考虑秘密二进制信息。相反,不同的秘密测量矩阵可能具有不同的大小,属性和结构,这取决于输入矢量的特性,所需的性能,压缩采样率和预期的重建结果。因此,秘密CS矩阵需要适当的密钥管理机制。在本文中,定义了秘密CS矩阵及其相关元数据的保护要求和属性。然后,设计了具有相应生命周期的高级秘密CS矩阵管理体系结构。我们的分析中讨论了秘密度量矩阵,关联的元数据及其管理功能之间的关联。

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