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Video rate control for streaming and local recording optimized for mobile devices

机译:针对移动设备优化的流和本地录制视频速率控制

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In this paper, we propose a real-time, low-complexity video rate control algorithm designed to obey buffer constraints. The algorithm is optimized for streaming and local recording applications in mobile devices. Today, most mobile phones include a digital camera that can be used to capture video. The on-phone processor technology has become powerful enough to encode video in real-time. The resulting file can, for example, be archived in the phone's memory, or (progressively or as one block) downloaded, through the 3G mobile network, Bluetooth, or WLAN, to Internet-connected computer systems. From here, all forms of multimedia transmission, such as streaming, file sharing, or multimedia mail become possible. In local recording and streaming applications on a mobile phone, we assume that no memory for storage of uncompressed video is available. Therefore, look-ahead and multi-path rate control is not possible. Furthermore, considering the processing power and, more importantly, battery life constraints in mobile devices, the proposed algorithm needs to be as simple as possible. The described algorithm implements a variable bitrate (VBR) by controlling the quantization scale (QS) on a per picture basis. The QS is calculated based on two other QSs, which correspond to constant rate and constant quality rate controls. The algorithm utilizes the variable bitrate benefits as much as possible so as to minimize the variation of the QS scale, and to provide encoded video with high visual quality. Although it strictly obeys buffering constraints as discussed later, the experimental results show that it allows encoded video at average quality levels significantly higher than reported in earlier works.
机译:在本文中,我们提出了一种实时的,低复杂度的视频速率控制算法,旨在服从缓冲区约束。该算法针对移动设备中的流式传输和本地录制应用程序进行了优化。如今,大多数手机都包括可用于捕获视频的数码相机。电话处理器技术已经变得足够强大,可以实时编码视频。生成的文件可以例如存储在电话的内存中,或通过3G移动网络,蓝牙或WLAN(逐步或作为一个块)下载到连接Internet的计算机系统中。从这里开始,所有形式的多媒体传输,例如流传输,文件共享或多媒体邮件,都成为可能。在手机上的本地录制和流媒体应用程序中,我们假定没有可用的内存来存储未压缩的视频。因此,无法进行预视和多路径速率控制。此外,考虑到处理能力以及更重要的是移动设备中的电池寿命限制,所提出的算法需要尽可能简单。所描述的算法通过基于每个图片控制量化比例(QS)来实现可变比特率(VBR)。 QS是基于其他两个QS来计算的,这两个QS分别对应于恒定速率和恒定质量速率控制。该算法尽可能地利用可变比特率收益,以最小化QS标度的变化,并提供具有高视觉质量的编码视频。尽管它严格遵守后面讨论的缓冲约束条件,但实验结果表明,它可以使编码视频的平均质量水平明显高于早期作品中的报道。

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