跨层下行链路模型中噪声、衰落和干扰对调度算法性能的影响

D. Arora, P. Agathoklis
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引用次数: 1

摘要

利用物理层的空时分组编码和波束形成以及MAC层的各种调度算法相结合的系统模型,研究了噪声、衰落和干扰对同时服务两个用户的系统性能的影响。系统性能以容量表示,评估了视线(LoS)和非视线(NLoS)环境、信噪比范围以及用于通过波束成形对抗干扰的不同数量的天线元件。正如预期的那样,对于高信噪比和所有调度算法的直接LoS环境,系统容量更高。容量的提高也是由于物理层天线元件数量的增加,从而导致更窄的波束宽度,并有助于最大限度地减少来自其他同时服务用户的干扰。D. Arora和P. Agathoklis(2005)提出的调度算法明确考虑了同时服务的用户之间的角度扩散以对抗干扰,其性能始终优于贪婪调度算法和轮询调度算法。结果表明,共同解决物理层和MAC层问题对于实现最大的系统性能至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of noise, fading and interference on the performance of scheduling algorithms in a cross-layer downlink model
A system model combining space time block coding and beamforming at the PHY layer along with various scheduling algorithms at the MAC layer is used to study the effect of noise, fading and interference on the performance of a system that simultaneously serves two users. System performance expressed in terms of capacity, is assessed for line of sight (LoS) and non-LoS (NLoS) environments, for a range of SNRs, and for different number of antenna elements that are used for combating interference via beamforming. As expected, system capacity is higher for higher SNRs and for direct LoS environments for all scheduling algorithms. The improvement in capacity is also achieved due to an increased number of antenna elements at the PHY layer that leads to narrower beam widths, and aid in minimizing the interference from other simultaneously served users. The scheduling algorithm proposed by D. Arora and P. Agathoklis (2005), that explicitly considers the angular spread between simultaneously served users for combating interference, performs consistently better than the greedy and the round-robin (RR) scheduling algorithms. The results suggest that jointly addressing the PHY and MAC layer issues is important for achieving maximal system performance.
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