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A cumulative negative acknowledgment (CNAK) approach for scalable reliable multicast

机译:累积否定确认(CNAK)方法用于可扩展的可靠多播

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Error recovery by retransmission for large scale multicast faces two intrinsic scalability challenges: acknowledgment implosion and exposure to retransmission. This paper proposes a new scheme to reduce the cost of error recovery by using the idea of cumulative negative acknowledgment (CNAK). In the scheme, we assume a window control of size W. A receiver does not send back a NAK immediately upon the discovery of a packet loss. Instead, the receiver accumulates the losses and returns a CNAK to the source at about half of the window interval. Retransmission is carried out on multiple multicast channels which are mapped to window size W. The A /sub i/ multicast channel is mapped to the sequence number i where i = 1,2,...,W. Our scheme has these advantages: one CNAK replaces W/2 number of conventional NAK, thus, greatly reducing the NAK overhead. Moreover, the use of multiple multicast channels for packet retransmission completely eliminates the exposure hazard. We apply the CNAK scheme to the DR local recovery model and show that the proposed C4 protocol is the most efficient protocol among all. The protocol is highly scalable and free of unwanted repair packets.
机译:通过大规模多播的重传进行错误恢复面临着两个固有的可扩展性挑战:确认内爆和暴露于重传。本文提出了一种新的方案,通过使用累积否定确认(CNAK)的思想来降低错误恢复的成本。在该方案中,我们假设使用大小为W的窗口控件。接收方在发现丢包后不会立即将NAK发送回去。取而代之的是,接收器会累积损耗,并在大约窗口间隔的一半时将CNAK返回给信号源。重传在映射到窗口大小W的多个多播信道上进行。A / sub i /多播信道被映射到序列号i,其中i = 1,2,...,W。我们的方案具有以下优点:一个CNAK代替了W / 2个常规NAK,从而大大减少了NAK开销。而且,使用多个多播信道进行分组重传完全消除了暴露的危险。我们将CNAK方案应用于DR本地恢复模型,并表明所提出的C4协议是所有协议中最有效的协议。该协议具有高度的可扩展性,并且没有多余的修复包。

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