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Distributed Privacy-Preserving Access Control in Sensor Networks

机译:传感器网络中的分布式隐私保护访问控制

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The owner and users of a sensor network may be different, which necessitates privacy-preserving access control. On the one hand, the network owner need enforce strict access control so that the sensed data are only accessible to users willing to pay. On the other hand, users wish to protect their respective data access patterns whose disclosure may be used against their interests. This paper presents {rm DP}^2{rm{AC}}, a Distributed Privacy-Preserving Access Control scheme for sensor networks, which is the first work of its kind. Users in {rm DP}^2{rm{AC}} purchase tokens from the network owner whereby to query data from sensor nodes which will reply only after validating the tokens. The use of blind signatures in token generation ensures that tokens are publicly verifiable yet unlinkable to user identities, so privacy-preserving access control is achieved. A central component in {rm DP}^2{rm{AC}} is to prevent malicious users from reusing tokens, for which we propose a suite of distributed token reuse detection (DTRD) schemes without involving the base station. These schemes share the essential idea that a sensor node checks with some other nodes (called witnesses) whether a token has been used, but they differ in how the witnesses are chosen. We thoroughly compare their performance with regard to TRD capability, communication overhead, storage overhead, and attack resilience. The efficacy and efficiency of {rm DP}^2{rm{AC}} are confirmed by detailed performance evaluations.
机译:传感器网络的所有者和用户可能不同,这需要保留隐私的访问控制。一方面,网络所有者需要实施严格的访问控制,以便仅愿意付费的用户才能访问感测到的数据。另一方面,用户希望保护其各自的数据访问模式,这些数据访问模式可能会出于自身利益使用。本文介绍了{rm DP} ^ 2 {rm {AC}},这是一种用于传感器网络的分布式隐私保护访问控制方案,这是同类研究的第一项工作。 {rm DP} ^ 2 {rm {AC}}中的用户从网络所有者那里购买令牌,从而从传感器节点查询数据,这些传感器节点仅在验证令牌后才会回复。在令牌生成中使用盲签名可确保令牌可公开验证,但不能与用户身份链接,因此可实现隐私保护访问控制。 {rm DP} ^ 2 {rm {AC}}的中心组件是防止恶意用户重用令牌,为此,我们提出了一套分布式令牌重用检测(DTRD)方案,而无需涉及基站。这些方案共享一个基本思想,即传感器节点与其他一些节点(称为见证人)检查是否已使用令牌,但是它们在选择见证人方面有所不同。我们将它们的性能在TRD功能,通信开销,存储开销和攻击弹性方面进行了全面比较。 {rm DP} ^ 2 {rm {AC}}的功效和效率已通过详细的性能评估得到确认。

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