Novel Optimized Cross-Layer Design with Maximum Weighted Capacity Based Resource Allocation for AMC/HARQ Wireless Networks

Reham A. El-mayet, H. El-Badawy, S. Elramly
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引用次数: 1

Abstract

To provide quality-of service (QoS) guarantees for heterogeneous applications, most recent wireless communications technologies and standards combine the error-correcting capability of hybrid automatic repeat request (HARQ) schemes at the data link layer (DLL) with the adaptation ability of the adaptive modulation and coding (AMC) modes at the physical layer (PHY) layer. This paper aims to investigate the aggregated system capacity as well as the breakdown of this capacity for different ACM modes in each HARQ scheme. This investigation was done by using maximum weighted capacity (MWC) resource allocation at the PHY layer in conjunction with a novel packet error rate (PER)-based scheduling at the medium access control (MAC) layer. As a result, the dominant AMC mode corresponding to channel SNR was available.
基于最大加权容量的AMC/HARQ无线网络跨层优化设计
为了保证异构应用的服务质量(QoS),最新的无线通信技术和标准将数据链路层(DLL)的混合自动重复请求(HARQ)方案的纠错能力与物理层(PHY)的自适应调制和编码(AMC)模式的自适应能力相结合。本文旨在研究每个HARQ方案中不同ACM模式下的系统总容量以及该容量的分解。这项研究是通过在物理层使用最大加权容量(MWC)资源分配以及在介质访问控制(MAC)层使用一种新颖的基于数据包错误率(PER)的调度来完成的。从而形成了与信道信噪比相对应的优势AMC模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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