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Privacy preserved wireless sensor location protocols based on mobile edge computing

机译:基于移动边缘计算的隐私保护无线传感器定位协议

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The emergence of all kinds of Internet of Things applications have brought great convenience to the people's life, while wireless sensor location is one of the most important basements for them. Security and privacy issues should always the top priority of a system, however, the privacy protection of wireless sensor location is particularly difficult.In this paper, corresponding to the most common location algorithms, trilateration and multilateration, two privacy preserved location protocols are proposed based on Paillier's homomorphic encryption scheme. The protocols are designed in Mobile-Edge Computing architecture. Different from other schemes who protect location privacy by identity anonymity, the proposed protocols protect the privacy of the real location information. The base stations who are semi-honest and not colluding with each other, send the encrypted distance data to edge server, and edge server computes on ciphertext and products the encrypted location of the sensor.The security of the protocols is based on the semantic security of Paillier encryption. To obtain the sensor's position in a privacy protect manner, all the extra calculations include one step of encryption for each base station and one step of decryption for sensor, and only two times of message transmission are needed, the proposed protocols are secure and practical. (C) 2018 Elsevier Ltd. All rights reserved.
机译:各种各样的物联网应用的出现为人们的生活带来了极大的便利,而无线传感器的位置对他们来说是最重要的基础之一。安全和隐私问题应始终是系统的头等大事,但是,无线传感器位置的隐私保护尤为困难。本文针对最常见的定位算法,三边测量和多边测量,提出了两种基于隐私保护的位置协议Paillier的同态加密方案。这些协议是在移动边缘计算体系结构中设计的。与其他通过身份匿名保护位置隐私的方案不同,所提出的协议可以保护真实位置信息的隐私。半诚实且不互相勾结的基站将加密的距离数据发送到边缘服务器,边缘服务器根据密文计算并生成传感器的加密位置。协议的安全性基于语义安全性Paillier加密。为了以隐私保护的方式获得传感器的位置,所有额外的计算都包括对每个基站的加密步骤和对传感器的解密步骤,并且仅需要两次消息传输,所提出的协议是安全且实用的。 (C)2018 Elsevier Ltd.保留所有权利。

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