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首页> 外文期刊>Industrial and organizational psychology >Haptic Exploration During Fast Video Playback: Vibrotactile Support for Event Search in Robot Operation Videos
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Haptic Exploration During Fast Video Playback: Vibrotactile Support for Event Search in Robot Operation Videos

机译:快速视频播放期间的触觉探索:在机器人操作视频中对事件搜索的vibrotactive支持

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摘要

Fast playback allows quick video exploration, but it also decreases the saliency of short events. We propose a haptic exploration for detection of short events during fast video playback, considering that event-related information in vibrotactile feedback can be preserved during fast playback using Time Scale Modification (TSM) methods developed for audio. We evaluate our proposal in two collision detection experiments using first-person view (FPV) videos. In the first experiment, viewers watched at a fixed playback speed, i.e., 1x or 2x, videos recorded with a camera mounted on a platform cart. In this experiment, event-related vibrations were measured at the back of the camera. In the second experiment, viewers used a media controller to adjust the playback speed in videos simulating an exploration with a mobile robot. In this experiment, event-related vibrations were generated from the measurements used in the first experiment. We show that a haptic exploration improves collision awareness under either constant or adjustable playback speed. In both experiments, the number of collisions reported without vibrotactile feedback deviated the greatest from the actual number of collisions in a video. Moreover, collision detection performance with vibrations time-scaled without Time Scale Modification (TSM) methods was not significantly different from performance without vibrations.
机译:快速播放允许快速视频探索,但它也会降低短事的显着性。我们提出了一种触觉探索,用于在快速视频播放期间检测短事事件,考虑到在使用为音频开发的时间尺度修改(TSM)方法的快速播放期间,可以保留vibrotactive反馈中的事件相关信息。我们使用第一人称视图(FPV)视频在两个碰撞检测实验中评估我们的提议。在第一个实验中,观众以固定的播放速度观看,即1x或2x,用安装在平台上的相机录制的视频。在该实验中,在相机背面测量事件相关的振动。在第二个实验中,观众使用媒体控制器来调整模拟移动机器人探索的视频中的播放速度。在该实验中,从第一次实验中使用的测量产生了事件相关的振动。我们表明,在常量或可调的播放速度下提高了触觉探测。在这两个实验中,没有振动反馈报告的碰撞次数偏离了视频中的实际碰撞数量。此外,在没有时间尺度修改(TSM)方法的情况下,具有振动的碰撞检测性能与没有振动的性能没有显着不同。

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