使用动态转码管理图像捕获设备(数码相机)中的存储和电池资源

Surendar Chandra, C. Ellis, Amin Vahdat
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引用次数: 19

摘要

硬件成像技术的进步和用户对方便的移动电子图像捕获的需求正在推动廉价图像捕获设备的发展,这些设备可以获得与摄影胶片相媲美的图像质量。硬件成像技术的改进必须与意识到本地存储和电池限制的智能图像存储机制相匹配。在本文中,我们探索使用动态的、知情的图像转码技术来管理数码相机中消耗的电池和存储资源。这种应用感知技术是大众消费者接受这些新数字技术的基础。我们证明,这种技术可以让相机存储一个数量级以上的图像。对于中等数量的图像(例如40),转码技术也可以保持高质量的图像。快速无线网络的可用性可以让相机在电池电量耗尽之前拍摄58张高质量图像(上传51张)。具有昂贵读写操作的存储技术(如微磁盘)可能会对电池寿命产生轻微的负面影响,因为与代码转换操作相关的额外读写操作。我们展示了向最终用户有效沟通功率、尺寸和质量权衡的能力,这对于应用程序适应当前的操作条件非常重要。
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Managing the storage and battery resources in an image capture device (digital camera) using dynamic transcoding
Advances in hardware imaging technology and user demand for convenient mobile electronic image capture are fueling the development of inexpensive image capture devices that can acquire images rivaling the image quality of photographic film. Improvements in the hardware imaging technology have to be matched with intelligent image storage mechanisms that are aware of local storage and battery constraints. In this paper, we explore using a dynamic, informed image transcoding technique to manage the consumed battery and storage resources in digital cameras. Such application aware technologies are fundamental for the mass consumer acceptance of these newer digital technologies. We show that this technique can allow the camera to store an order of magnitude more images. For a moderate number of images (e.g. 40), transcoding techniques can also maintain high quality images. The availability of fast wireless networks can allow the camera to capture 58 high quality images (51 uploaded) before running out of battery power. Storage technologies with expensive read and write operations (such as micro disks) can have a minor negative impact on battery life because of the extra read and write operations associated with transcoding operations. We show that the ability to effectively communicate the power vs. size vs. quality tradeoff to the end user is important for applications to adapt to the prevailing operating conditions.
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