Referential Loss Recovery for Streaming Audio using Application Level Multicast

M. Hayasake, M. Gamage, T. Miki
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引用次数: 6

Abstract

The demand for real-time multimedia streaming services using application level multicast (ALM) is expected to grow rapidly in the near future and these multimedia applications consists of many media. Especially, the audio media requires a guaranteed quality of service (QoS). The ALM is expected to provide multicast services in a wide area. However, packet losses during transmission are a serious problem in these services as they result in degradation of the QoS. Forward error correction (FEC) is a promising technique to recover the lost packets and improve the QoS of streaming media. In the conventional audio streaming, pre-buffering of media stream and FEC techniques are required to cope with delay jitter and packet losses. However, FEC may degrade the QoS of all communications due to the increased congestion caused by FEC overhead with the increase of streaming sessions. In this paper, a novel FEC method that improves QoS of audio streaming services is proposed. It avoids the increased congestion caused by FEC overhead during media streaming. It also accommodates the delay jitter even without prebuffering of media stream. Furthermore, it provides the QoS according to requirements and environments of users, and location in the multicast tree by using layered coding of FEC. Thus, packet losses and jitter are recovered at each end host using ALM and do not affect the next-hop streaming. The results of computer simulations show that our proposed method provides better audio quality compared to conventional method
使用应用级多播的流音频的参考损失恢复
基于应用层多播(ALM)的实时多媒体流媒体服务的需求在不久的将来将迅速增长,这些多媒体应用由多种媒体组成。特别是音频媒体,需要保证服务质量(QoS)。预计ALM将在广泛的区域内提供多播服务。然而,在这些业务中,传输过程中的丢包是一个严重的问题,因为它会导致QoS的降低。前向纠错(FEC)是一种很有前途的恢复流媒体丢失数据包和提高流媒体服务质量的技术。在传统的音频流中,需要对媒体流进行预缓冲和FEC技术来应对延迟抖动和丢包问题。但是,FEC可能会降低所有通信的QoS,因为FEC开销会随着流会话的增加而增加拥塞。本文提出了一种新的FEC方法来提高音频流服务的QoS。它避免了媒体流期间由于FEC开销而增加的拥塞。它也适应延迟抖动,即使没有媒体流的预缓冲。利用FEC的分层编码,根据用户的需求和环境提供QoS,并在组播树中定位。因此,丢包和抖动在每个端主机上使用ALM恢复,不影响下一跳流。计算机仿真结果表明,与传统方法相比,该方法具有更好的音质
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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