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Design and Implementation of an “Approximate” Communication System for Wireless Media Applications

机译:无线媒体应用“近似”通信系统的设计与实现

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All practical wireless communication systems are prone to errors. At the symbol level, such wireless errors have a well-defined structure: When a receiver decodes a symbol erroneously, it is more likely that the decoded symbol is a good “approximation” of the transmitted symbol than a randomly chosen symbol among all possible transmitted symbols. Based on this property, we define approximate communication, a method that exploits this error structure to natively provide unequal error protection to data bits. Unlike traditional [forward error correction (FEC)-based] mechanisms of unequal error protection that consume additional network and spectrum resources to encode redundant data, the approximate communication technique achieves this property at the PHY layer without consuming any additional network or spectrum resources (apart from a minimal signaling overhead). Approximate communication is particularly useful to media delivery applications that can benefit significantly from unequal error protection of data bits. We show the usefulness of this method to such applications by designing and implementing an end-to-end media delivery system, called Apex. Our Software Defined Radio (SDR)-based experiments reveal that Apex can improve video quality by 5-20 dB [peak signal-to-noise ratio (PSNR)] across a diverse set of wireless conditions when compared to traditional approaches. We believe that mechanisms such as Apex can be a cornerstone in designing future wireless media delivery systems under any error-prone channel condition.
机译:所有实用的无线通信系统都容易出错。在符号级别,这种无线错误具有定义明确的结构:当接收器错误地解码符号时,与所有可能的传输符号中随机选择的符号相比,解码后的符号更可能是所传输符号的良好“近似”符号。基于此属性,我们定义了近似通信,一种利用此错误结构为数据位提供不平等错误保护的方法。不像传统的基于[前向纠错(FEC)的不平等错误保护机制]会消耗额外的网络和频谱资源来对冗余数据进行编码,近似通信技术在PHY层实现了此属性,而不会消耗任何额外的网络或频谱资源(一部分从最小的信令开销)。近似通信对媒体传送应用特别有用,因为媒体传送应用可以从数据位的不平等错误保护中受益匪浅。通过设计和实现称为Apex的端到端媒体传递系统,我们展示了此方法对此类应用程序的有用性。我们的基于软件无线电(SDR)的实验表明,与传统方法相比,Apex在多种无线条件下可以将视频质量提高5-20 dB [峰值信噪比(PSNR)]。我们相信,在任何容易出错的信道条件下,诸如Apex之类的机制都可以成为设计未来无线媒体传输系统的基石。

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