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Work-Conserving In-Sequence Striping in Multi-Band Wireless Backhaul Systems

机译:多频带无线回程系统中的工作节省顺序条带化

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摘要

Link aggregation, or multi-band striping, has been used in wireless backhaul systems to overcome the limitations of bandwidth and transmission range. Work-conserving and in-sequence delivery are essential but conflicting requirements in multi-band striping systems. Previous schemes can achieve one or the other, but not both. The heterogeneous channel and time varying data rate in multi-band wireless backhaul systems present additional challenges. We aim at designing a multi-band striping algorithm to achieve both work-conserving and in-sequence delivery in the heterogeneous time-varying multi-band wireless backhaul system. We propose a parallel processing architecture for multi-band aggregation, and derive the necessary conditions for such system to achieve sequence preserving and work conserving. An optimum set of timing controls is developed and proved to provide the best performance. We design a work-conserving in-sequence striping algorithm and prove it to be sequence preserving and work conserving. The algorithm is then extended to practical data granularity. Performance analysis and simulation results demonstrate that our designs are able to preserve data sequence, reduce delay, and achieve 100% channel utilization.
机译:在无线回程系统中已使用链路聚合或多频带条带化技术来克服带宽和传输范围的限制。保存工作和按顺序进行交付是必不可少的,但在多频段分条系统中的要求是相互矛盾的。先前的方案可以实现一个或另一个,但不能同时实现。多频带无线回程系统中的异构信道和时变数据速率提出了其他挑战。我们旨在设计一种多频段分条算法,以在异构时变多频段无线回程系统中实现工作保存和按序交付。我们提出了一种用于多频带聚合的并行处理架构,并推导了该系统实现序列保留和工作保存的必要条件。已开发出一套最佳的时序控制,并证明可以提供最佳性能。我们设计了一种节省工作的序列条带化算法,证明了该算法是序列保存和工作保存的。然后将该算法扩展到实际数据粒度。性能分析和仿真结果表明,我们的设计能够保留数据序列,减少延迟并实现100%的信道利用率。

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