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Cross-layer combination of hybrid ARQ and adaptive modulation and coding for QoS provisioning in wireless data networks

机译:混合ARQ和自适应调制和编码无线数据网络中QoS配置的跨层组合

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In this paper, we present a cross-layer design which combines adaptive modulation and coding (AMC) at the physical layer with type-II hybrid automatic repeat request (HARQ) at the data link layer for QoS provisioning under fading channels. To maximize system spectral efficiency as well as satisfy QoS parameters such as data rate, delay and packet error rate (PER), we have proposed a new cross-layer scheme, where AMC transmits incremental redundancy for combining decoding with type-II HARQ. The proposed cross-layer scheme is designed to meet the target packet error rate within the pre-defined number of retransmissions. Since the number of retransmissions can be determined by the maximum delay bound imposed by upper layer applications, the proposed scheme will provide guaranteed QoS in terms of data rate, delay and packet error rate under fading channels. We have theoretically analyzed the system PER performance, the spectral efficiency and goodput of the proposed cross-layer design scheme. Since the application packet size is one of the most crucial factors to affect the performance of the proposed scheme, we also introduce an adaptive algorithm to derive the optimal information packet size under the current channel condition to achieve the maximum throughput. Numerical results show that the proposed scheme can achieve the maximum spectral efficiency while satisfying the target delay, packet loss rate and goodput imposed by the applications.
机译:在本文中,我们介绍了一个跨层设计,它在衰落通道下的数据链路层中使用类型的II混合自动重复请求(HARQ)将自适应调制和编码(AMC)组合在衰落通道下的QoS供应。为了最大化系统谱效率以及满足数据速率,延迟和分组错误率(PER)的满足QoS参数,我们提出了一种新的横梁方案,其中AMC发出增量冗余以与II型HARQ结合解码。所提出的横梁方案被设计为满足预定义的重传的目标分组错误率。由于重传的数量可以通过上层应用施加的最大延迟绑定来确定,因此所提出的方案将在衰落通道下的数据速率,延迟和分组错误率方面提供有保证的QoS。我们理论上分析了每个性能的系统,频谱效率和所提出的跨层设计方案的良品。由于应用程序包大小是影响所提出的方案性能的最重要因素之一,因此我们还引入了自适应算法来在当前信道条件下导出最佳信息分组大小以实现最大吞吐量。数值结果表明,该方案可以实现最大频谱效率,同时满足应用程序施加的目标延迟,丢包率和矿量。

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