With the exponential increase of the number of devices in wireless networks, more enabling technologies are expected to fulfill the network requirements of high throughput, massive connectivity, and diversify quality of service. To this end, rate splitting multiple access (RSMA) is proposed as a promising solution to improve spectral efficiency and provide better fairness for the next-generation mobile networks. In this paper, the outage performance of uplink RSMA transmission with randomly deployed users is investigated, taking both user scheduling schemes and power allocation strategies into consideration. Specifically, the greedy user scheduling (GUS) and cumulative distribution function (CDF) based user scheduling (CUS) schemes are considered, which could maximize the rate performance and guarantee scheduling fairness, respectively. Meanwhile, we re-investigate cognitive power allocation (CPA) strategy, and propose a new rate fairness-oriented power allocation (FPA) strategy to enhance the scheduled users' rate fairness. By employing order statistics and stochastic geometry, an analytical expression of the outage probability for each scheduling scheme combining power allocation is derived to characterize the performance. To get more insights, the achieved diversity order of each scheme is also derived. Theoretical results demonstrate that both GUS and CUS schemes applying CPA or FPA strategy can achieve full diversity orders, and the application of CPA strategy in RSMA can effectively eliminate the secondary user's diversity order constraint from the primary user. Simulation results corroborate the accuracy of the analytical expressions, and show that the proposed FPA strategy can achieve excellent rate fairness performance in high signal-to-noise ratio region.
翻译:随着无线网络装置数量的指数增长,预计更有利的技术将满足高输送量、大规模连通和服务质量多样化等网络要求。为此,建议将多存率分解(RSMA)是提高光谱效率和为下一代移动网络提供更公平性的一个有希望的解决办法。本文调查了RSMA传输与随机部署用户之间上连接的中断性能,同时考虑到用户排期计划和权力分配战略。具体而言,考虑基于用户排期的贪婪用户排期和累积分配功能(CDF)的用户排期计划,这可以分别最大限度地提高费率的公平性能和保证排期的公平性。与此同时,我们重新投资认知能力分配战略,并提出新的以公平性为导向的权力分配战略,以提高预定用户的公平性。通过使用定序统计和随机测量,对将权力分配相结合的每个排期计划外概率的分析表现可以描述业绩。为了更深入了解,每个计划实现的多样性顺序,可以分别保证表公平性,保证时间安排的公平性。与此同时,我们从理论上表明,在IMAS和CIMA系统应用中,可以有效地执行用户的高度多样性战略。