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Frame Rate Up Conversion Assisted With Camera Auto Exposure Information

机译:相机自动曝光信息辅助的帧频升频转换

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Frame rate up conversion (FRC) is the process of converting between different frame rates for targeted display formats. Besides scanning format applications for large displays, FRC can be used to increase the frame rate of video at the receiver end for video telephony, video streaming or playback applications for mobile platforms where bandwidth savings are crucial. Many algorithms have been proposed for decoder/receiver side FRC. However, most of them are from video encoding/decoding point of view. We systematically studied the strategies of utilizing the camera 3A (auto exposure, auto white balance and auto focus) information to assist FRC process, while in this paper we focus on the technique using camera exposure information to assist the decoder FRC. In the proposed strategy the exposure information as well as other camera 3A related information is packetized as the meta data which is attached to the corresponding frame and transmitted together with the main video bit stream to the decoder side for FRC assistance. The meta data contains information such as zooming, auto focus, AE (auto exposure), AWB (auto white balance) statistics, scene change detection, global motion detected from motion sensors. The proposed meta data consists of camera specific information which is different than just sending motion vectors or mode information to aid FRC process. Compared to traditional FRC approaches used in mobile platforms, the proposed approach is a low-complexity, low-power solution which is crucial in resource constrained environments such as mobile platforms.
机译:帧速率上转换(FRC)是在目标显示格式的不同帧速率之间进行转换的过程。除了用于大型显示​​器的扫描格式应用程序之外,FRC还可以用于提高接收器端的视频帧速率,以用于带宽节省至关重要的移动平台的视频电话,视频流或回放应用程序。已经针对解码器/接收器侧FRC提出了许多算法。但是,大多数都是从视频编码/解码的角度来看的。我们系统地研究了利用摄像机3A信息(自动曝光,自动白平衡和自动对焦)信息来辅助FRC过程的策略,而在本文中,我们重点研究了使用摄像机曝光信息来辅助解码器FRC的技术。在提出的策略中,将曝光信息以及其他与相机3A相关的信息打包为元数据,并将其附加到相应的帧,并与主视频位流一起传输到解码器侧以进行FRC辅助。元数据包含诸如缩放,自动对焦,AE(自动曝光),AWB(自动白平衡)统计信息,场景更改检测,从运动传感器检测到的全局运动之类的信息。所提出的元数据由摄像机专用信息组成,该信息不同于仅发送运动矢量或模式信息以辅助FRC处理。与移动平台中使用的传统FRC方法相比,该方法是一种低复杂度,低功耗的解决方案,在资源受限的环境(例如移动平台)中至关重要。

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