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Further results on throughput optimization using adaptive PHY/MAC/APP layer techniques

机译:使用自适应PHY / MAC / APP层技术进行吞吐量优化的更多结果

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Cross-layer design breaks away from traditional wireless network design where each layer of the protocol stack is optimized independently. We develop a cross-layer design framework that judiciously combines adaptive modulation at the physical (PHY) layer, packet length adaptation strategy at the medium access control (MAC) layer, and source rate adaptation at the application (APP) layer in order to maximize the user throughput over a myriad of fading environments. Specifically, optimization equations for each of the design variables are derived in closed-form and an efficient (i.e., reduced search space) algorithm for the joint triplet-parameter optimization is also presented. The impact of restricting the design parameters (to a limited number of feasible values) on the throughput performance is also investigated. Numerical results reveal that it is sufficient to adapt the symbol rate alone in the low mean signal-to-noise ratio (SNR) regime while joint-optimization of both packet length and constellation size parameters is required in better channel conditions, to achieve the maximum throughput in a myriad of wireless fading environments.
机译:跨层设计不同于传统的无线网络设计,在传统的无线网络设计中,协议栈的每一层都是独立优化的。我们开发了一个跨层设计框架,该框架明智地结合了物理(PHY)层的自适应调制,介质访问控制(MAC)层的分组长度自适应策略和应用程序(APP)层的源速率自适应,以实现最大化在众多衰落环境中的用户吞吐量。具体地,以闭合形式导出用于每个设计变量的优化方程,并且还提出了用于联合三重态参数优化的有效(即,减小的搜索空间)算法。还研究了将设计参数限制为有限数量的可行值对吞吐量性能的影响。数值结果表明,仅在低平均信噪比(SNR)方案中单独调整符号率就足够了,而在更好的信道条件下,需要对分组长度和星座图大小参数进行联合优化,以实现最大无数无线衰落环境中的吞吐量。

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