Towards Portable Multi-camera High Definition Video Capture Using Smartphones

Surendar Chandra, Patrick Chiu, Maribeth Back
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Abstract

Real-time tele-immersion requires low latency and synchronized multi-camera capture. Prior high definition (HD) capture systems were bulky. We investigate the suitability of using flocks of smartphone cameras for tele-immersion. Smartphones integrate capture and streaming into a single portable package. However, they archive the captured video into a movie. Hence, we create a sequence of H.264 movies and stream them. Capture delay is reduced by minimizing the number of frames in each movie segment. However, fewer frames reduces compression efficiency. Also, smartphone video encoders do not sacrifice video quality to lower the compression latency or the stream size. On an iPhone 4S, our application that uses published APIs streams 1920×1080 videos at 16.5 fps with a delay of 712 ms between a real-life event and displaying an uncompressed bitmap of this event on a local laptop. Note that the bulky Cisco Tandberg required 300 ms delay. Stereoscopic video from two unsynchronized smartphones also showed minimal visual artifacts in an indoor setting.
使用智能手机实现便携式多摄像头高清视频采集
实时远程沉浸需要低延迟和同步多相机捕获。先前的高清晰度(HD)捕获系统体积庞大。我们调查了使用一群智能手机相机进行远程沉浸的适用性。智能手机将捕捉和流媒体集成到一个便携包中。然而,他们将捕获的视频存档成电影。因此,我们创建一个H.264电影序列并流式传输它们。通过最小化每个电影片段中的帧数来减少捕获延迟。然而,更少的帧会降低压缩效率。此外,智能手机视频编码器不会牺牲视频质量来降低压缩延迟或流大小。在iPhone 4S上,我们使用已发布api的应用程序以16.5 fps的速度流式传输1920×1080视频,在真实事件和在本地笔记本电脑上显示此事件的未压缩位图之间的延迟为712毫秒。请注意,笨重的Cisco Tandberg需要300毫秒的延迟。两台不同步智能手机的立体视频在室内环境中也显示出最小的视觉伪影。
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