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Puncturable Attribute-Based Encryption for Secure Data Delivery in Internet of Things

机译:基于冒险的属性的加密,以便在Internet上安全数据传送

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While the Internet of Things (IoT) is embraced as important tools for efficiency and productivity, it is becoming an increasingly attractive target for cybercriminals. This work represents the first endeavor to develop practical Puncturable Attribute Based Encryption schemes that are light-weight and applicable in IoTs. In the proposed scheme, the attribute-based encryption is adopted for fine grained access control. The secret keys are puncturable to revoke the decryption capability for selected messages, recipients, or time periods, thus protecting selected important messages even if the current key is compro- mised, In contrast to conventional forward encryption, a distin- guishing merit of the proposed approach is that the recipients can update their keys by themselves without key re-issuing from the key distributor. It does not require frequent communications between IoT devices and the key distribution center, neither does it need deleting components to expunge existing keys to produce a new key. Moreover, we devise a novel approach which efficiently integrates attribute-based key and punctured keys such that the key size is roughly the same as that of the original attribute-based encryption. We prove the correctness of the proposed scheme and its security under the Decisional Bilinear Diffie-Hellman (DBDH) assumption. We also implement the proposed scheme on Raspberry Pi and observe that the computation efficiency of the proposed approach is comparable to the original attribute-based encryption. Both encryption and decryption can be completed within tens of milliseconds.
机译:虽然事情互联网(物联网)被接受为效率和生产力的重要工具,但它正在成为网络犯罪分子的越来越具有较为有吸引力的目标。这项工作代表了开发基于实际的铜的基于属性的加密方案的首次努力,可在IOT中适用。在所提出的方案中,采用基于属性的加密用于细粒度访问控制。秘密密钥符合抵消可抵消所选消息,收件人或时间段的解密能力,从而保护所选择的重要消息,即使当前密钥被赋予,与传统的前进加密相比,所提出的分辨率造成的优点方法是,收件人可以自行更新其键,而无需从密钥分销商重新发布。它不需要频繁通信IOT设备和密钥分发中心,也不需要删除组件来删除现有键以生成新密钥。此外,我们设计了一种新的方法,该方法有效地集成了基于属性的密钥和穿刺键,使得密钥大小与基于原始属性的加密的密钥大致相同。我们证明了拟议方案的正确性及其在决定性双线性地狱地狱曼(DBDH)假设下的安全性。我们还在覆盆子PI上实施了所提出的方案,并观察到所提出的方法的计算效率与基于原始属性的加密相当。加密和解密都可以在几十毫秒内完成。

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