Snapshot: A Self-Calibration Protocol for Camera Sensor Networks

Xiaotao Liu, Purushottam Kulkarni, P. Shenoy, Deepak Ganesan
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引用次数: 35

Abstract

A camera sensor network is a wireless network of cameras designed for ad-hoc deployment. The camera sensors in such a network need to be properly calibrated by determining their location, orientation, and range. This paper presents Snapshot, an automated calibration protocol that is explicitly designed and optimized for camera sensor networks. Snapshot uses the inherent imaging abilities of the cameras themselves for calibration and can determine the location and orientation of a camera sensor using only four reference points. Our techniques draw upon principles from computer vision, optics, and geometry and are designed to work with low-fidelity, low-power camera sensors that are typical in sensor networks. An experimental evaluation of our prototype implementation shows that Snapshot yields an error of 1-2.5 degrees when determining the camera orientation and 5-10cm when determining the camera location. We show that this is a tolerable error in practice since a Snapshot-calibrated sensor network can track moving objects to within 11cm of their actual locations. Finally, our measurements indicate that Snapshot can calibrate a camera sensor within 20 seconds, enabling it to calibrate a sensor network containing tens of cameras within minutes.
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快照:相机传感器网络的自校准协议
摄像机传感器网络是一种无线摄像机网络,专为ad-hoc部署而设计。这种网络中的摄像机传感器需要通过确定它们的位置、方向和范围来进行适当的校准。本文介绍了一种自动校准协议Snapshot,它是为相机传感器网络明确设计和优化的。Snapshot使用相机本身固有的成像能力进行校准,并且仅使用四个参考点就可以确定相机传感器的位置和方向。我们的技术借鉴了计算机视觉、光学和几何原理,设计用于传感器网络中典型的低保真度、低功耗相机传感器。对原型实现的实验评估表明,Snapshot在确定相机方向时产生1-2.5度的误差,在确定相机位置时产生5-10cm的误差。我们表明,在实践中,这是一个可以容忍的误差,因为快照校准的传感器网络可以跟踪移动物体到其实际位置的11cm以内。最后,我们的测量表明,Snapshot可以在20秒内校准相机传感器,使其能够在几分钟内校准包含数十台相机的传感器网络。
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