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首页> 外文期刊>IEEE Transactions on Signal Processing >Exploration of Full HD Media Decoding on a Software Defined Radio Baseband Processor
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Exploration of Full HD Media Decoding on a Software Defined Radio Baseband Processor

机译:在软件定义的无线电基带处理器上探索全高清媒体解码

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Recently, various specialized Software Defined Radio (SDR) baseband processors have been proposed for meeting the high performance and programmability requirements for emerging wireless communication applications. In order to support high throughput wireless communication, the SDR baseband processors typically employ many parallel computation elements, which may also be used for performing other signal processing applications. This paper explores the feasibility of performing complex media processing on such SDR baseband processors. Specifically, the full HD 1080p state-of-the-art H.264/AVC media decoding has been implemented onto a recent version of the ADRES based SDR baseband processor. Since the processor was originally designed exclusively for wireless baseband applications, algorithm and architecture co-optimizations are required to make the goal feasible. Following algorithm analysis, the computationally dominant tasks of the H.264/AVC, including the motion compensation, the intra prediction, the inverse integer transform, and the deblocking filter, have been selected to be mapped onto the ADRES. The experimental results show that, with limited architectural extensions, the ADRES based baseband processor achieves competitive performance efficiency, even compared with several processors that are specifically optimized for the media decoding application.
机译:最近,已经提出了各种专用的软件定义无线电(SDR)基带处理器,以满足新兴无线通信应用的高性能和可编程性要求。为了支持高吞吐量无线通信,SDR基带处理器通常采用许多并行计算元素,这些元素也可以用于执行其他信号处理应用程序。本文探讨了在此类SDR基带处理器上执行复杂媒体处理的可行性。具体而言,已经在基于ADRES的SDR基带处理器的最新版本上实现了全高清1080p H.264 / AVC最新媒体解码。由于该处理器最初是专门为无线基带应用设计的,因此需要算法和体系结构共同优化才能使该目标可行。经过算法分析,已选择H.264 / AVC的计算主导任务,包括运动补偿,帧内预测,​​逆整数变换和解块滤波器,以映射到ADRES。实验结果表明,与有限的体系结构扩展相比,基于ADRES的基带处理器即使与针对媒体解码应用进行了专门优化的几种处理器相比,也能达到有竞争力的性能效率。

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