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Stereoscopic video system with embedded high spatial resolution images using two channels for transmission

机译:具有两个通道的嵌入式高空间分辨率图像的立体视频系统

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Teleoperation requires both wide vision to recognize a whole workspace and fine vision to recognize the precise structure of objects which an operator wants to see. In order to achieve high operational efficiency in teleoperation, we have developed the Q stereoscopic video system which is constructed of four sets of video cameras and monitors. It requires four video channels to transmit video signals. However, four channels are not always available for a video system because of the limitation of the number of radio channels when multiple systems are used at the same time. Therefore we have tried to reduce the number of channels on this system by sending images from the right and left cameras alternately by field. In experiment 1, we compared the acuity of depth perception under three kinds of stereoscopic video systems, the original Q stereoscopic video system, the Q stereoscopic video system with two channel transmission, and the conventional stereoscopic video system. As the result of the experiment, the original Q stereoscopic video system enabled us to perceive depth most precisely, the Q stereoscopic video system with two channel transmission less so, and the conventional stereoscopic video system even less. In experiment 2, we compared the Q stereoscopic video system with two channel transmission to the original Q stereoscopic video system. The result showed that the operators were able to work more efficiently under the original Q stereoscopic video system than under the Q stereoscopic video system with two channel transmissions. In experiment 3, we compared the Q stereoscopic video system with two channel transmission to the conventional stereoscopic video system. It was found out in this study that the new stereoscopic video system we developed enabled operators to work more efficiently and to perceive depth more precisely than the conventional stereoscopic video system, although the number of channels for image transmission of this system was equal to that of the conventional stereoscopic video system.
机译:远程操作既需要广阔的视野来识别整个工作区,也需要精细的视野来识别操作员想要看到的物体的精确结构。为了实现远距离操作的高效率,我们开发了Q立体视频系统,该系统由四套摄像机和监视器构成。它需要四个视频通道来传输视频信号。但是,由于同时使用多个系统时无线电频道数的限制,四个频道并非始终可用于视频系统。因此,我们试图通过按场交替发送左右摄像机的图像来减少该系统上的频道数量。在实验1中,我们比较了三种立体视频系统,原始Q立体视频系统,具有两通道传输的Q立体视频系统和常规立体视频系统在深度感知方面的敏锐度。作为实验的结果,原始的Q立体视频系统使我们能够最精确地感知深度,具有两通道传输的Q立体视频系统更少,而传统的立体视频系统则更少。在实验2中,我们将具有两个通道传输的Q立体视频系统与原始Q立体视频系统进行了比较。结果表明,与具有两个通道传输的Q立体视频系统相比,操作员在原始Q立体视频系统下的工作效率更高。在实验3中,我们将具有两通道传输的Q立体视频系统与传统的立体视频系统进行了比较。在这项研究中发现,尽管该系统的图像传输通道数量等于传统的立体视频系统的通道数,但我们开发的新型立体视频系统使操作员能够比传统的立体视频系统更有效地工作,并能够更精确地感知深度。传统的立体视频系统。

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