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大规模无线传感器网络中基于全同态加密的安全数据聚合

Secure Data Aggregation with Fully Homomorphic Encryption in Large-Scale Wireless Sensor Networks.

作者信息

Li Xing, Chen Dexin, Li Chunyan, Wang Liangmin

机构信息

School of Computer Science and Communication Engineering, Jiangsu University, Zhenjiang 212013, China.

College of Computer Science, Sichuan University, Chengdu 610065, China.

出版信息

Sensors (Basel). 2015 Jul 3;15(7):15952-73. doi: 10.3390/s150715952.

Abstract

With the rapid development of wireless communication technology, sensor technology, information acquisition and processing technology, sensor networks will finally have a deep influence on all aspects of people's lives. The battery resources of sensor nodes should be managed efficiently in order to prolong network lifetime in large-scale wireless sensor networks (LWSNs). Data aggregation represents an important method to remove redundancy as well as unnecessary data transmission and hence cut down the energy used in communication. As sensor nodes are deployed in hostile environments, the security of the sensitive information such as confidentiality and integrity should be considered. This paper proposes Fully homomorphic Encryption based Secure data Aggregation (FESA) in LWSNs which can protect end-to-end data confidentiality and support arbitrary aggregation operations over encrypted data. In addition, by utilizing message authentication codes (MACs), this scheme can also verify data integrity during data aggregation and forwarding processes so that false data can be detected as early as possible. Although the FHE increase the computation overhead due to its large public key size, simulation results show that it is implementable in LWSNs and performs well. Compared with other protocols, the transmitted data and network overhead are reduced in our scheme.

摘要

随着无线通信技术、传感器技术、信息获取与处理技术的飞速发展,传感器网络最终将对人们生活的方方面面产生深远影响。在大规模无线传感器网络(LWSN)中,为了延长网络寿命,需要对传感器节点的电池资源进行有效管理。数据聚合是一种重要的方法,可消除冗余以及不必要的数据传输,从而减少通信能耗。由于传感器节点部署在恶劣环境中,因此应考虑敏感信息的安全性,如保密性和完整性。本文提出了一种基于全同态加密的LWSN安全数据聚合(FESA)方案,该方案可以保护端到端的数据机密性,并支持对加密数据进行任意聚合操作。此外,通过使用消息认证码(MAC),该方案还可以在数据聚合和转发过程中验证数据完整性,以便尽早检测到虚假数据。尽管全同态加密由于其公钥规模较大而增加了计算开销,但仿真结果表明它在LWSN中是可实现的,并且性能良好。与其他协议相比,我们的方案减少了传输数据和网络开销。

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