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Secure Processing of Stream Cipher Encrypted Data Issued from IOT: Application to a Connected Knee Prosthesis

机译:从物联网发出的流密码加密数据的安全处理:应用于连接的膝关节假体

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In this paper, we propose a secure protocol that allows processing encrypted data emitted by a medical IOT device. Its originality stands on a new fast algorithm which makes possible the conversion of Combined Linear Congruential Generator (CLCG) encrypted data into data homomorphically encrypted with the Damgard-Jurik (D-J) cryptosystem. By doing so, an honest-but-curious third party, like a smartphone, can process data issued from the IOT devices (e.g. raising a health alert) without endangering data privacy while CLCG can be integrated in an IOT of low computation capabilities. Moreover, in order to reduce communication and computation complexities compared to existing solutions and to achieve a real time solution, we further propose a secure packed version of CLCG in the D-J domain. With it a medical IOT can encrypt several pieces of data at once while allowing a third party to independently convert and process them in their D-J homomorphic encrypted form. We theoretically and experimentally demonstrate the performance of our solution in the case of a connected knee prosthesis, the data of which are processed for patient monitoring.
机译:在本文中,我们提出了一种安全协议,该协议可以处理医疗物联网设备发出的加密数据。它的独创性在于一种新的快速算法,该算法可以将组合线性同等生成器(CLCG)加密的数据转换为使用Damgard-Jurik(D-J)密码系统进行同态加密的数据。这样,诚实但好奇的第三方(例如智能手机)可以处理从物联网设备发出的数据(例如发出健康警报),而不会危及数据隐私,而CLCG可以集成到低计算能力的物联网中。此外,为了与现有解决方案相比降低通信和计算复杂度并实现实时解决方案,我们进一步在D-J域中提出了CLCG的安全打包版本。有了它,医疗物联网可以一次加密多个数据,同时允许第三方以D-J同态加密形式独立转换和处理它们。我们在理论上和实验上证明了在连接膝关节假体的情况下我们的解决方案的性能,该假体的数据经过处理以用于患者监测。

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