一种自适应混合arq方案对抗ka波段低轨卫星系统中功率控制滞后引起的突发误差

Wenzhen Li, V. Dubey, C. Law
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引用次数: 4

摘要

在具有马尔可夫信道的ka波段LEO卫星系统中采用功率控制时,在信道状态转换过程中,由于环路的长滞后导致功率控制间隙,从而导致长(大)突发误差。为了解决这一问题,本文提出了一种新的混合ARQ方案,该方案基于迭代SOVA译码算法,利用turbo译码器的侧信息推导出期望帧的平均可靠性LLR/sub l/。当LLR/sub /小于指定阈值时,启动Go-Back-N ARQ协议。该方案通过重传有效地检测和修正了大规模突发误差;滤除小尺度突发误差,进行交错和FEC编码校正。仿真结果表明,该方案能够在ka波段马尔可夫卫星信道中以较小的吞吐量和时延代价获得较好的误码率性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An adaptive hybrid-ARQ scheme combating burst-errors caused by power control lag in Ka-band LEO satellite systems
When power control is employed in a Ka-band LEO satellite system featured with a Markov channel, the long loop lag induces power control gaps during channel state transition, which results in long (large-scale) burst errors. To combat it, a novel hybrid ARQ scheme is proposed in this paper, in which the side information of the turbo decoder is utilized to derive the average reliability LLR/sub l/ of the desired frame based on the iterative SOVA decoding algorithm. When LLR/sub l/ is below the specified threshold, a Go-Back-N ARQ protocol is launched. With this scheme, the large-scale burst errors are effectively detected and corrected by the retransmission; the small-scale burst errors are filtered out for the interleaving and FEC coding to correct. The simulation results show that this scheme can achieve good BER performance with small cost in throughput and delay for Ka-band Markov satellite channels.
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