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Performance evaluation of AL-FEC LDPC codes for push content applications in wireless unidirectional environments

机译:用于无线单向环境中推送内容应用的AL-FEC LDPC码的性能评估

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摘要

FEC (Forward Error Correction) mechanisms improve IP content transmission reliability through the recovery of packets lost in transmission. Opposite to ARQ (Automatic Repeat Request), FEC mechanisms are especially suited to unidirectional environments or to multicast environments where multiple receivers perceived different channel losses, thus making difficult the implementation of mechanisms based on feedback information. Among the different types of FEC codes, this paper presents a thorough performance evaluation of LDPC (Low Density Parity Check) codes, based on an implementation developed by the authors, according to the specifications defined by RFC 5170 for the usage of LDPC codes by push content applications based on the FLUTE protocol. LDPC codes provide a good trade-off between performance and complexity, hence, they are appropriate for mobile applications. Contributions of this paper include tests conducted with commercial mobile phones connected to the push content download server over a Wi-Fi network. The evaluation highlights the advantages of using packet level FEC encoding in file transmission over unidirectional networks and provides with a comparison between two kinds of LDPC structures: Staircase and Triangle. This is accomplished by calculating the inefficiency ratio of these LDPC structures in different environments. Results show that the implemented LDPC codes can provide inefficiency ratios close to one when the different coding parameters (as the code rate or the number of blocks) are configured to an optimal value that depends on the packet loss rate.
机译:FEC(前向纠错)机制通过恢复传输中丢失的数据包来提高IP内容传输的可靠性。与ARQ(自动重复请求)相反,FEC机制特别适合于单向环境或多播环境,在该环境中,多个接收器感觉到不同的信道损耗,因此使基于反馈信息的机制难以实现。在不同类型的FEC代码中,本文基于作者开发的实现,根据RFC 5170定义的有关通过推送使用LDPC代码的规范,对LDPC(低密度奇偶校验)代码进行了全面的性能评估。基于FLUTE协议的内容应用程序。 LDPC代码在性能和复杂性之间提供了良好的折衷,因此,它们适用于移动应用程序。本文的贡献包括对通过Wi-Fi网络连接到推送内容下载服务器的商用手机进行的测试。该评估突出了在单向网络上的文件传输中使用数据包级FEC编码的优势,并提供了两种LDPC结构之间的比较:楼梯结构和三角形。这是通过计算不同环境中这些LDPC结构的无效率来实现的。结果表明,当将不同的编码参数(如编码率或块数)配置为取决于丢包率的最佳值时,实施的LDPC码可以提供接近于1的无效率。

著录项

  • 来源
    《Multimedia Tools and Applications》 |2012年第3期|p.669-688|共20页
  • 作者单位

    Institute of Telecommunications and Multimedia Applications (iTEAM), Universitat Politecnica de Valencia, Camino de Vera, 46071 Valencia, Spain;

    Institute of Telecommunications and Multimedia Applications (iTEAM), Universitat Politecnica de Valencia, Camino de Vera, 46071 Valencia, Spain;

    Institute of Telecommunications and Multimedia Applications (iTEAM), Universitat Politecnica de Valencia, Camino de Vera, 46071 Valencia, Spain;

    Institute of Telecommunications and Multimedia Applications (iTEAM), Universitat Politecnica de Valencia, Camino de Vera, 46071 Valencia, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LDPC; FLUTE; AL-FEC; push content download service; Wi-Fi; broadcast;

    机译:LDPC;长笛;AL-FEC;推送内容下载服务;无线上网;广播;

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