Encoding and communication energy consumption trade-off in H.264/AVC based video sensor network

Bambang A. B. Sarif, M. Pourazad, P. Nasiopoulos, Victor C. M. Leung
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引用次数: 13

Abstract

Video sensor networks (VSN) offer an interesting platform for a distributed and flexible surveillance system. In such a system, video compression and wireless transmission are the major operations on each video node. For a battery-powered wireless video sensor, it is essential to maximize the power efficiency of these two operations. Currently, H.264/AVC is the most widely used ITU-T and ISO/IEC video coding standard. Previous works on determining the trade-off between compression and transmission that minimizes energy consumption consider oversimplified coding configurations, thus not taking full advantage of the flexibility and advanced features of H.264/AVC. Choosing the right configuration and setting parameters that lead to optimal encoding performance is of prime importance for video sensor network (VSN) applications, especially since VSN is constrained in terms of bandwidth and energy resources. This paper studies the relationship between the picture quality, the transmission rate, and the complexity of the encoder to expound the energy consumption trade-off between encoding and transmission in VSN. The results of our study can be used as guidelines in optimizing the overall power consumption of a VSN system as it detailed in the paper.
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基于H.264/AVC的视频传感器网络中编码与通信能耗的权衡
视频传感器网络(VSN)为分布式、灵活的监控系统提供了一个有趣的平台。在该系统中,视频压缩和无线传输是每个视频节点上的主要操作。对于电池供电的无线视频传感器来说,最大限度地提高这两种操作的功率效率至关重要。目前,H.264/AVC是ITU-T和ISO/IEC使用最广泛的视频编码标准。以前的工作是在确定压缩和传输之间的权衡,以最大限度地减少能耗,考虑过于简化的编码配置,因此没有充分利用H.264/AVC的灵活性和先进特性。对于视频传感器网络(VSN)应用来说,选择正确的配置和设置参数以获得最佳的编码性能是至关重要的,尤其是在VSN受带宽和能源限制的情况下。本文研究了图像质量、传输速率和编码器复杂度之间的关系,阐述了VSN中编码和传输之间的能耗权衡。我们的研究结果可以作为优化VSN系统整体功耗的指导方针,并在论文中详细介绍。
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