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首页> 外文期刊>International Journal of Distributed Sensor Networks >Hilbert-Curve Based Data Aggregation Scheme to Enforce Data Privacy and Data Integrity for Wireless Sensor Networks
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Hilbert-Curve Based Data Aggregation Scheme to Enforce Data Privacy and Data Integrity for Wireless Sensor Networks

机译:基于Hilbert-Curve的数据聚合方案,可增强无线传感器网络的数据保密性和数据完整性

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Data aggregation techniques have been proposed for wireless sensor networks (WSNs) to address the problems presented by the limited resources of sensor nodes. The provision of efficient data aggregation to preserve data privacy is a challenging issue in WSNs. Some existing data aggregation methods for preserving data privacy are CPDA, SMART, the Twin-Key based method, and GP2S. These methods, however, have two limitations. First, the communication cost for network construction is considerably high. Second, they do not support data integrity. There are two methods for supporting data integrity, iCPDA and iPDA. But they have high communication cost due to additional integrity checking messages. To resolve this problem, we propose a novel Hilbert-curve based data aggregation scheme that enforces data privacy and data integrity for WSNs. To minimize communication cost, we utilize a tree-based network structure for constructing networks and aggregating data. To preserve data privacy, we make use of both a seed exchange algorithm and Hilbert-curve based data encryption. To support data integrity, we use an integrity checking algorithm based on the PIR technique by directly communicating between parent and child nodes. Finally, through a performance analysis, we show that our scheme outperforms the existing methods in terms of both energy efficiency and privacy preservation.
机译:已经提出了用于无线传感器网络(WSN)的数据聚合技术,以解决传感器节点的有限资源所带来的问题。在WSN中,提供有效的数据聚合来保护数据隐私是一个具有挑战性的问题。现有的一些用于保护数据隐私的数据聚合方法是CPDA,SMART,基于双键的方法和GP2S。但是,这些方法有两个局限性。首先,用于网络建设的通信成本相当高。其次,它们不支持数据完整性。有两种支持数据完整性的方法:iCPDA和iPDA。但是由于附加的完整性检查消息,它们具有很高的通信成本。为了解决此问题,我们提出了一种新颖的基于希尔伯特曲线的数据聚合方案,该方案可为WSN强制执行数据隐私和数据完整性。为了最大程度地降低通信成本,我们利用基于树的网络结构来构建网络和聚合数据。为了保护数据隐私,我们同时使用了种子交换算法和基于希尔伯特曲线的数据加密。为了支持数据完整性,我们通过直接在父节点和子节点之间进行通信来使用基于PIR技术的完整性检查算法。最后,通过性能分析,我们显示出该方案在能效和隐私保护方面均优于现有方法。

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