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Performance analysis of a high-performance real-time application with several AL-FEC schemes

机译:具有几种AL-FEC方案的高性能实时应用程序的性能分析

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Real-time streaming applications typically require minimizing packet loss and transmission delay so as to keep the best possible playback quality. From this point of view, IP datagram losses (e.g. caused by a congested router, or caused by a short term fading problem with wireless transmissions) have major negative impacts. Although Application Layer Forward Error Correction (AL-FEC) is a useful technique for protecting against packet loss, the playback quality is largely sensitive to the AL-FEC code/codec features and the way they are used. In this work, we consider three FEC schemes for the erasure channel: 2D parity check codes, Reed-Solomon over GF(28) codes, and LDPC-Staircase codes, all of them being currently standardized within IETF. We have integrated these FEC schemes in the FECFRAME framework, a framework that is also being standardized at IETF, and whose goal is to integrate AL-FEC schemes in real-time protocol stacks in a simple and flexible way. Then we modified the Digital Video Transport System (DVTS) high-performance real-time video streaming application so that it can benefit from FECFRAME in order to recover from transmission impairments. We then carried out several performance evaluations in order to identify, for a given loss rate, the optimal configuration in which DVTS performs the best.
机译:实时流应用程序通常需要将数据包丢失和传输延迟降到最低,以保持最佳的播放质量。从这一观点出发,IP数据报丢失(例如,由路由器拥塞引起的,或者由无线传输的短期衰落问题引起的)具有重大的负面影响。尽管应用程序层前向纠错(AL-FEC)是防止数据包丢失的有用技术,但是播放质量对AL-FEC编码/编解码器功能及其使用方式非常敏感。在这项工作中,我们为擦除信道考虑了三种FEC方案:2D奇偶校验码,GF(2 8 )码上的Reed-Solomon码和LDPC-Staircase码,目前它们都已在其中标准化。 IETF。我们已经将这些FEC方案集成到了FECFRAME框架中,该框架也在IETF上进行了标准化,其目标是以一种简单,灵活的方式将AL-FEC方案集成到实时协议栈中。然后,我们修改了数字视频传输系统(DVTS)高性能实时视频流应用程序,使其可以从FECFRAME中受益,以便从传输障碍中恢复过来。然后,我们进行了几项性能评估,以针对给定的丢失率确定DVTS表现最佳的最佳配置。

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