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首页> 外文期刊>Circuits and Systems for Video Technology, IEEE Transactions on >Delay—Power-Rate-Distortion Model for Wireless Video Communication Under Delay and Energy Constraints
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Delay—Power-Rate-Distortion Model for Wireless Video Communication Under Delay and Energy Constraints

机译:延迟和能量约束下的无线视频通信时延-功率率失真模型

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摘要

Smart mobile phones are capable of performing video coding and streaming over wireless networks, but are often constrained by the end-to-end delay requirement and energy supply. To achieve optimal performance under the delay and energy constraints, in this paper we extend the traditional rate-distortion (R-D) model and the previously proposed delay R-D model to a novel delay-power-rate-distortion (d-P-R-D) model by including another two dimensions (the encoding time and encoder power consumption), which quantifies the relationship among source encoding delay, rate, distortion, and power consumption for IPPPP coding mode in H.264/AVC. We have verified the accuracy of our proposed d-P-R-D model through experiments. Based on the proposed d-P-R-D model, we develop a novel rate-control (RC) algorithm, which minimizes the encoding distortion under the constraints of rate, delay, and power. The experimental results demonstrate the superiority of the proposed RC algorithm over the existing scheme. Therefore, the d-P-R-D model and the model-based RC provide a theoretical basis and a practical guideline for the cross-layer system design and performance optimization in wireless video communication under delay and energy constraints.
机译:智能手机能够通过无线网络执行视频编码和流传输,但通常受到端到端延迟要求和能源供应的限制。为了在延迟和能量约束下实现最佳性能,本文通过将另外两个模型扩展到传统的速率失真(RD)模型和先前提出的延迟RD模型,使其扩展为新型的延迟功率速率失真(dPRD)模型。尺寸(编码时间和编码器功耗),它量化了H.264 / AVC中IPPPP编码模式的源编码延迟,速率,失真和功耗之间的关系。我们已经通过实验验证了我们提出的d-P-R-D模型的准确性。基于提出的d-P-R-D模型,我们开发了一种新颖的速率控制(RC)算法,该算法在速率,延迟和功率的约束下将编码失真降至最低。实验结果证明了所提出的RC算法优于现有方案。因此,d-P-R-D模型和基于模型的RC为延迟和能量约束下的无线视频通信中的跨层系统设计和性能优化提供了理论依据和实践指导。

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