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Camera tracking in virtual studio

机译:在虚拟工作室追踪相机

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The virtual studio concept replaces real background sets with computer-generated synthetic scenes. In this paper, we discuss the optical landmark-based camera tracking method in virtual studio applications. Studio cameras are zoom lens imaging device, both the internal parameters and external parameters of the camera are allowed to vary from image to image. Optical tracking --uses pattern recognition--eliminates the need for painstaking calibration of the lens system and can be used with any camera mount, including hand-held cameras. Here we address the problem of accurately tracking the 3D motion and focus of a monocular camera in a known 3D environment and dynamically estimating the 3D location and focus of the camera. We utilize fully automated landmark-based camera calibration to initialize the motion estimation and employ extended Kalman filter techniques to track landmarks and to estimate the camera location and focus. The implementation of our approach has been proven to be efficient and robust and our system successfully tracks in real-time at approximately 25 Hz. This paper describes several years of work at the NUDT Multimedia laboratory to develop optical pattern recognition and tracking systems for use in virtual studio.
机译:虚拟工作室概念替换了与计算机生成的合成场景的真实背景集。在本文中,我们讨论虚拟工作室应用中的光学地标的相机跟踪方法。 Studio相机是缩放镜头成像设备,允许相机的内部参数和外部参数因图像而异。光学跟踪 - 测量模式识别 - 消除了对镜头系统的艰苦校准的需求,可以与任何相机安装一起使用,包括手持式摄像头。在这里,我们解决了在已知的3D环境中准确地跟踪单眼相机的3D运动和焦点的问题,并动态地估计相机的3D位置和焦点。我们利用完全自动化的基于地标的相机校准来初始化运动估计,并采用扩展的卡尔曼滤波器技术来跟踪地标并估计相机位置和焦点。已经证明我们的方法的实施是有效和强大的,我们的系统成功地在大约25 Hz上实时跟踪。本文介绍了NUDT多媒体实验室的几年工作,以开发用于虚拟工作室的光学模式识别和跟踪系统。

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