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Algorithm and Architecture Design of Bandwidth-Oriented Motion Estimation for Real-Time Mobile Video Applications

机译:实时移动视频应用中面向带宽的运动估计算法和架构设计

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This paper proposes a data bandwidth-oriented motion estimation design for resource-limited mobile video applications using an integrated bandwidth rate distortion optimization framework. This framework predicts and allocates the appropriate data bandwidth for motion estimation under a limited bandwidth supply to fit a dynamically changing bandwidth supply. The simulation results show that our proposed algorithm can achieve 66% and 41% memory bandwidth savings while maintaining an equivalent rate-distortion performance and meeting real-time targets, when compared with conventional approaches for low-motion and high-motion D1 (704$,times,$ 576)-size video, respectively. The final implementation costs 122 K gate counts with TSMC 0.13-$mu$ m CMOS technology and consumes 74 mW of power for D1 resolution at 30 frames/s which is 40% of that achieved in previous designs.
机译:本文使用集成的带宽速率失真优化框架,为资源受限的移动视频应用提出了一种面向数据带宽的运动估计设计。该框架预测并分配适当的数据带宽,以便在有限的带宽供应下进行运动估计,以适应动态变化的带宽供应。仿真结果表明,与低运动和高运动D1的传统方法相比,我们提出的算法可以节省66%和41%的内存带宽,同时保持同等的速率失真性能并满足实时目标(704 ,次,$ 576)大小的视频。最终实现采用TSMC0.13-μmCMOS技术的成本为122 K,而D1分辨率以30帧/秒的速度消耗74 mW的功率,这是以前设计中的40%。

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