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Attribute-Based Encryption Supporting Direct/Indirect Revocation Modes

机译:支持直接/间接吊销模式的基于属性的加密

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摘要

Attribute-based encryption (ABE) enables an access control mechanism over encrypted data by specifying access policies among private keys and ciphertexts. In this paper, we focus on ABE that supports revocation. Currently, there are two available revocable ABE schemes in the literature. Their revocation mechanisms, however, differ in the sense that they can be considered as direct and indirect methods. Direct revocation enforces revocation directly by the sender who specifies the revocation list while encrypting. Indirect revocation enforces revocation by the key authority who releases a key update material periodically in such a way that only non-revoked users can update their keys (hence, revoked users' keys are implicitly rendered useless). An advantage of the indirect method over the direct one is that it does not require senders to know the revocation list. In contrast, an advantage of the direct method over the other is that it does not involve key update phase for all non-revoked users interacting with the key authority. In this paper, we present the first Hybrid Revocable ABE scheme that allows senders to select on-the-fly when encrypting whether to use either direct or indirect revocation mode; therefore, it combines best advantages from both methods.
机译:通过指定私钥和密文之间的访问策略,基于属性的加密(ABE)启用了对加密数据的访问控制机制。在本文中,我们重点介绍支持撤销的ABE。当前,文献中有两种可用的可撤销ABE方案。但是,它们的撤销机制在意义上可以被视为直接和间接方法方面有所不同。直接吊销直接由发件人直接吊销,发件人在加密时指定吊销列表。间接吊销强制执行由密钥授权机构的吊销,密钥授权机构以只有未吊销的用户才能更新其密钥的方式定期发布密钥更新材料(因此,被吊销的用户密钥隐含地变得无用)。间接方法相对于直接方法的优点是它不需要发件人知道吊销列表。相反,直接方法相对于另一个方法的优点是,它不涉及与密钥颁发机构进行交互的所有未吊销用户的密钥更新阶段。在本文中,我们提出了第一个混合可撤销ABE方案,该方案允许发件人在加密时使用直接或间接撤销模式进行即时选择。因此,它结合了两种方法的最大优势。

著录项

  • 来源
    《Cryptography and coding》|2009年|P.278-300|共23页
  • 会议地点 Cirencester(GB);Cirencester(GB)
  • 作者单位

    Research Center for Information Security (RCIS), National Institute of Advanced Industrial Science and Technology (AIST) Akihabara-Daibiru Room 1003, 1-18-13, Sotokanda, Chiyoda-ku, Tokyo 101-0021 Japan;

    rnResearch Center for Information Security (RCIS), National Institute of Advanced Industrial Science and Technology (AIST) Akihabara-Daibiru Room 1003, 1-18-13, Sotokanda, Chiyoda-ku, Tokyo 101-0021 Japan;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 密码的编码与译码;
  • 关键词

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