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Fog Architectures and Sensor Location Certification in Distributed Event-Based Systems

机译:基于分布式事件的系统中的雾架构和传感器位置认证

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摘要

Since smart cities aim at becoming self-monitoring and self-response systems, their deployment relies on close resource monitoring through large-scale urban sensing. The subsequent gathering of massive amounts of data makes essential the development of event-filtering mechanisms that enable the selection of what is relevant and trustworthy. Due to the rise of mobile event producers, location information has become a valuable filtering criterion, as it not only offers extra information on the described event, but also enhances trust in the producer. Implementing mechanisms that validate the quality of location information becomes then imperative. The lack of such strategies in cloud architectures compels the adoption of new communication schemes for Internet of Things (IoT)-based urban services. To serve the demand for location verification in urban event-based systems (DEBS), we have designed three different fog architectures that combine proximity and cloud communication. We have used network simulations with realistic urban traces to prove that the three of them can correctly identify between 73% and 100% of false location claims.
机译:由于智能城市旨在成为自我监测和自我反应系统,因此他们的部署通过大规模城市传感来依赖于密切资源监测。随后的大量数据收集使得事件过滤机制的发展成为必要选择相关和值得信赖的机制。由于移动事件生产者的兴起,位置信息已成为有价值的过滤标准,因为它不仅提供了关于所描述的事件的额外信息,而且还增强了在生产者中的信任。实施验证位置信息质量的机制变为势在必行。云体系结构中缺乏此类策略迫使采用新的通信方案(以互联网)基于互联网(物联网)的城市服务。为了满足城市活动的系统(DEBS)对位置验证的需求,我们设计了三种不同的雾架构,结合了邻近和云通信。我们使用了与现实城市迹象的网络模拟,以证明他们三个可以正确识别73%和100%的假位置索赔。

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