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Novel Remotely Keyed Encryption Schemes for Smart Card Applications

机译:适用于智能卡应用程序的新型远程密钥加密方案

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The Remotely Keyed Encryption Schemes (RKESs) are greatly useful in solving the vital problem of how to do bulk encryption/decryption for high-bandwidth applications (like multimedia data encryption) in a way that takes advantage of both the superior power of the host and the superior security of the smart card. Accordingly, we propose two novel RKESs, a Length Preserving (LP) RKES and a Length Increasing (LI) RKES. The proposed LPRKES is based on a general view of the well known Feistel-Network (FN) in which we only use two rounds in an efficient and secure way, employing data-dependent cipher-keys. In the LIRKES, an extra ciphertext block is used, encrypting the one-time random cipher-key based on a signature of the whole ciphertext. The security of the presented schemes are theoretically proven and, compared to the state-of-the-art RKESs, the savings in the required computational complexity, run-time, bandwidth, and storage space are emphasized.
机译:远程密钥加密方案(RKES)在解决关键问题方面非常有用,该问题是如何利用主机和主机的强大功能来对高带宽应用程序(如多媒体数据加密)进行批量加密/解密。智能卡的卓越安全性。因此,我们提出了两种新颖的RKES,即长度保留(LP)RKES和长度增加(LI)RKES。拟议的LPRKES基于众所周知的Feistel网络(FN)的一般视图,在该视图中,我们仅使用高效且安全的方式使用两轮,并使用了依赖于数据的密码密钥。在LIRKES中,使用了一个额外的密文块,它基于整个密文的签名对一次性随机密文密钥进行加密。所提出的方案的安全性在理论上得到了证明,并且与最新的RKES相比,强调了在所需的计算复杂性,运行时间,带宽和存储空间方面的节省。

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