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Optimal PET Protection for Streaming Scalably Compressed Video Streams With Limited Retransmission Based on Incomplete Feedback

机译:基于不完全反馈的有限重发流可缩放压缩视频流的最佳PET保护

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For streaming scalably compressed video streams over unreliable networks, Limited-Retransmission Priority Encoding Transmission (LR-PET) outperforms PET remarkably since the opportunity to retransmit is fully exploited by hypothesizing the possible future retransmission behavior before the retransmission really occurs. For the retransmission to be efficient in such a scheme, it is critical to get adequate acknowledgment from a previous transmission before deciding what data to retransmit. However, in many scenarios, the presence of a stochastic packet delay process results in frequent late acknowledgments, while imperfect feedback channels can impare the server's knowledge of what the client has received. This paper proposes an extended LR-PET scheme, which optimizes PET-protection of transmissed bitstreams, recognizing that the received feedback information is likely to be incomplete. Similar to the original LR-PET, the behavior of future retransmissions is hypothesized in the optimization objective of each transmission opportunity. As the key contribution, we develop a method to efficiently derive the effective recovery probability versus redundancy rate characteristic for the extended LR-PET communication process. This significantly simplifies the ultimate protection assignment procedure. This paper also demonstrates the advantage of the proposed strategy over several alternative strategies.
机译:对于通过不可靠的网络流式传输可缩放压缩的视频流,有限重传优先级编码传输(LR-PET)的性能明显优于PET,这是因为通过在真正发生重传之前假设未来可能的重传行为来充分利用重传的机会。为了使重传在这种方案中有效,在决定要重传什么数据之前,从先前的传输中获得足够的确认至关重要。但是,在许多情况下,随机数据包延迟过程的存在会导致频繁的延迟确认,而不完善的反馈通道可能会损害服务器对客户端已接收内容的了解。本文提出了一种扩展的LR-PET方案,该方案优化了传输比特流的PET保护,并意识到接收到的反馈信息很可能是不完整的。与原始LR-PET相似,在每个传输机会的优化目标中假设了未来重传的行为。作为关键贡献,我们开发了一种方法,可以有效地得出扩展的LR-PET通信过程的有效恢复概率与冗余率的关系。这大大简化了最终的保护分配过程。本文还展示了所提出的策略相对于其他几种策略的优势。

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