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Improving link layer performance on satellite channels with shadowing via delayed two-copy selective repeat ARQ

机译:通过延迟两拷贝选择性重复ARQ,提高卫星频道的链路层性能

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This paper focuses on improving performance of land mobile satellite channels (LMSCs) at high band (Ka-band or EHF band), where shadowing is the primary impediment to reliable data transmission. Compared with multipath fading, shadowing exists on a longer time scale; hence, interleaving to combat shadowing introduces unacceptably large decoding delay. We use Lutz's model to investigate bit-error rate/packet-error rate (BER/PER) performance of interleaving with various forward error correction (FEC) coding as a function of different channel parameters to demonstrate its limited effectiveness for combatting burst errors whose mean duration significantly exceed a link layer (LL) packet. We propose a delayed two-copy selective repeat ARQ (DTC-SR-ARQ) scheme, whereby two copies of a packet are sent-the second with a delay relative to the first-in every transmission or retransmission. Closed-form expressions for mean transmission time, success probability, and residual loss probability are provided and simulations used to validate the analysis. Furthermore, the issue of optimum delay is addressed as well, and a simple yet effective strategy is suggested to support transmission control protocol (TCP) traffic over this data link layer. DTC-SR-ARQ is shown to achieve much shorter additional delay than interleaving and compared with normal SR-ARQ, reduces mean transmission time at expense of a small increase in residual packet loss probability. Furthermore, ns2 simulation results show that for TCP traffic, DTC-SR-ARQ acquires higher end-to-end throughput than normal SR-ARQ.
机译:本文侧重于提高高频段(KA带或EHF频段)的土地移动卫星通道(LMSC)的性能,其中阴影是可靠数据传输的主要障碍。与多径褪色相比,较长时间尺度存在阴影;因此,交错地对抗阴影引入了不可接受的大量解码延迟。我们使用Lutz模型来调查与各种前向纠错(FEC)编码的误码率/分组错误率(BER / PER)性能作为不同信道参数的函数,以展示其有限的效果,以便对抗其平均值的爆发错误持续时间显着超过链路层(LL)分组。我们提出了一个延迟的两拷贝选择性重复ARQ(DTC-SR-ARQ)方案,由此将分组的两个副本发送 - 第二个分组相对于第一在每个传输或重传的延迟。提供了用于平均传输时间,成功概率和剩余损耗概率的闭合表达式,用于验证分析的仿真。此外,还解决了最佳延迟问题,并且建议在该数据链路层上支持传输控制协议(TCP)流量的简单而有效的策略。 DTC-SR-ARQ显示出比交织的额外延迟更短,与正常的SR-ARQ相比,以牺牲少数增加的剩余分组损耗概率来减少平均传输时间。此外,NS2仿真结果表明,对于TCP流量,DTC-SR-ARQ比正常SR-ARQ获得更高的端到端吞吐量。

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