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Wireless image sensor networks: event acquisition in attack-prone and uncertain environments

机译:无线图像传感器网络:在容易受到攻击和不确定的环境中进行事件捕获

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摘要

Wireless Image Sensor Networks (WISNs) consisting of untethered camera nodes and sensors may be deployed in a variety of unattended and possibly hostile environments to obtain surveillance data. In such settings, the WISN nodes must perform reliable event acquisition to limit the energy, computation and delay drains associated with forwarding large volumes of image data wirelessly to a sink node. In this work we investigate the event acquisition properties of WISNs that employ various techniques at the camera nodes to distinguish between event and non-event frames in uncertain environments that may include attacks. These techniques include lightweight image processing, decisions from n sensors with/without cluster head fault and attack detection, and a combination approach relying on both lightweight image processing and sensor decisions. We analyze the relative merits and limitations of each approach in terms of the resulting probability of event detection and false alarm in the face of occasional errors, attacks and stealthy attacks.
机译:可以将由不受束缚的相机节点和传感器组成的无线图像传感器网络(WISN)部署在各种无人值守且可能是敌对的环境中,以获取监视数据。在这样的设置中,WISN节点必须执行可靠的事件获取,以限制与将大量图像数据无线转发到宿节点相关的能量,计算和延迟消耗。在这项工作中,我们调查了WISN的事件获取属性,这些事件在摄像机节点处采用了各种技术来区分可能包含攻击的不确定环境中的事件帧和非事件帧。这些技术包括轻量级图像处理,来自具有/不具有簇头故障和攻击检测的n个传感器的决策以及基于轻量级图像处理和传感器决策的组合方法。在遇到偶然的错误,攻击和隐身攻击的情况下,我们根据事件检测和错误警报的结果概率来分析每种方法的相对优缺点。

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