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Optimum Subpacket Transmission for Hybrid ARQ Systems

机译:混合ARQ系统的最佳子分组传输

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Optimum Subpacket Transmission for Hybrid ARQ Systems Hybrid automatic-repeat-request (ARQ) is a flexible and efficient technique for data transmissions. In hybrid ARQ, subpacket schemes are more attractive for systems with burst errors than complete packet schemes. Although subpacket schemes were proposed in ARQ systems, optimum subpacket transmission is more effective to maximize throughput in a dynamic channel. Since convolutional codes have properties of burst errors in decoding, the optimum subpacket can be applied to convolutional codes. This paper investigates the performance of subpacket transmission for convolutionally coded systems. An efficient method is proposed to estimate the optimum number of subpackets, and adaptive subpacket schemes, i.e., schemes that enable a system to employ different optimum numbers of subpackets under various conditions, are suggested to achieve the maximum throughput of the system. Numerical and simulation results show that the adaptive subpacket scheme is very effective for the convolutionally coded hybrid ARQ system, and it can provide higher throughput, smaller delay, and lower dropping rate than complete packet schemes. Moreover, the adaptive subpacket scheme can be flexibly used with packet-combining techniques to further improve the system throughput.
机译:混合ARQ系统的最佳子分组传输混合自动重复请求(ARQ)是一种灵活而有效的数据传输技术。在混合ARQ中,子分组方案对具有突发错误的系统比完整的分组方案更具吸引力。尽管在ARQ系统中提出了子分组方案,但是最佳子分组传输更有效地最大化了动态信道中的吞吐量。由于卷积码在解码中具有突发错误的特性,因此可以将最佳子分组应用于卷积码。本文研究了卷积编码系统子分组传输的性能。提出了一种有效的方法来估计子分组的最佳数量,并且提出了自适应子分组方案,即使得系统能够在各种条件下采用不同的最佳子分组数量的方案,以实现系统的最大吞吐量。数值和仿真结果表明,自适应子分组方案对卷积编码混合ARQ系统非常有效,与完整的分组方案相比,它可以提供更高的吞吐量,更小的延迟和更低的丢包率。此外,自适应子分组方案可以与分组组合技术灵活地结合使用,以进一步提高系统吞吐量。

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