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The quality of source location protection in globally attacked sensor networks

机译:受到全球攻击的传感器网络中源位置保护的质量

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We propose an efficient scheme for generating fake network traffic to disguise the real event notification in the presence of a global eavesdropper, which is especially relevant for the quality of service in delay-intolerant applications monitoring rare and spatially sparse events, and deployed as large wireless sensor networks with single data collector. The efficiency of the scheme that provides statistical source anonymity is achieved by partitioning network nodes randomly into several node groups. Members of the same group collectively emulate both temporal and spatial distribution of the event. Under such dummy-traffic framework of the source anonymity protection, we aim to better model the global eavesdropper, especially her way of using statistical tests to detect the real event, and to present the quality of the location protection as relative to the adversary's strength. In addition, our approach aims to reduce the per-event work spent to generate the fake traffic while, most importantly, providing a guaranteed latency in reporting the event. The latency is controlled by decoupling the routing from the fake-traffic schedule. We believe that the proposed source anonymity protection strategy, and the quality evaluation framework, are well justified by the abundance of the applications that monitor a rare event with known temporal and uniform spatial statistics.
机译:我们提出了一种有效的方案来生成伪造的网络流量,以在存在全球窃听者的情况下掩盖真实事件通知,这尤其与监控延迟和空间稀疏事件的时延不容忍应用程序中的服务质量有关,并已部署为大型无线网络具有单个数据收集器的传感器网络。提供统计源匿名性的方案的效率是通过将网络节点随机划分为几个节点组来实现的。同一组的成员共同模拟事件的时间和空间分布。在这种源匿名保护的虚拟流量框架下,我们的目标是更好地为全球窃听者建模,尤其是她使用统计测试来检测真实事件的方式,并提出相对于对手实力而言的位置保护质量。此外,我们的方法旨在减少用于生成假流量的每事件工作量,同时最重要的是,在报告事件方面提供有保证的延迟。延迟是通过将路由与假流量时间表解耦来控制的。我们认为,通过使用已知的时间和统一空间统计信息来监视稀有事件的大量应用程序,可以很好地证明所提议的源匿名保护策略和质量评估框架是合理的。

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