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Towards Zero Retransmission Overhead: A Symbol Level Network Coding Approach to Retransmission

机译:走向零重传开销:重传的符号级网络编码方法

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摘要

We present SYNC, a physical layer transmission scheme that drastically reduces the cost of retransmission by introducing network coding concepts to symbol level operation. It piggybacks a new packet on each retransmitted packet, and exploits the previously received packet (possibly with error) at the receiver to recover both the retransmitted packet and the piggybacked packet. The piggybacking is achieved through higher modulation, but it does not decrease the decodability of the mixed packets owing to the previously received packet at the receiver, which can be analytically shown. SYNC works independently of other PHY level performance boosting schemes such as channel coding and spatial diversity. The proof-of-concept SYNC prototype has been implemented on a software defined radio (SDR) platform. The measurement data shows that under the same channel condition SYNC achieves 110 percent and 42 percent median throughput gain over traditional retransmission and SOFT, respectively. We also show that SYNC can be used proactively where the feedback as to the success of the previous transmission is not available, such as in broadcast.
机译:我们提出了SYNC,这是一种物理层传输方案,它通过将网络编码概念引入符号级操作来大大降低了重传的成本。它在每个重传的数据包上piggy带一个新的数据包,并在接收方利用先前接收到的数据包(可能有错误)来恢复重传的数据包和and带的数据包。搭载可以通过更高的调制来实现,但是由于先前在接收器处接收到的分组,因此不会降低混合分组的可解码性,这可以分析地示出。 SYNC的工作独立于其他PHY级别的性能提升方案,例如信道编码和空间分集。概念证明SYNC原型已在软件定义的无线电(SDR)平台上实现。测量数据表明,在相同的信道条件下,SYNC分别比传统的重传和SOFT达到110%和42%的中值吞吐率增益。我们还表明,在无法获得有关先前传输成功的反馈(例如在广播中)的情况下,可以主动使用SYNC。

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