论文标题

将多个访问的速率分开用于认知无线电leo共存的卫星网络

Rate Splitting Multiple Access for Cognitive Radio GEO-LEO Co-Existing Satellite Networks

论文作者

Khan, Wali Ullah, Ali, Zain, Lagunas, Eva, Chatzinotas, Symeon, Ottersten, Björn

论文摘要

狮子座卫星的通信最近由于其高数据速率服务和较低的往返延迟而引起了人们的特别关注。发射是低成本的,可以提供全球覆盖范围。但是,频谱稀缺可能是LEO卫星增长的关键挑战之一,从而影响了对地面空间综合网络发展的严重限制。为了解决此问题,我们建议RSMA启用CR的Geo-Leo共存卫星网络。特别是,这项工作旨在通过同时优化LEO卫星通信的功率分配和子载波束分配,同时将干扰温度限制为GEO卫星用户,从而最大程度地提高系统的总和速率。总和最大化的问题被提出为非凸,并且全局最佳解决方案挑战。因此,我们首先采用连续的凸近似技术来降低复杂性并使问题更容易处理。然后,对于功率分配,我们利用KKT条件并基于贪婪的副本梁分配方法采用有效的算法。我们还提出了两个具有固定功率分配的次优方案,并且作为基准的随机子载波束分配。结果证明了与基准方案相比,该计划的好处。

LEO satellite communication has drawn particular attention recently due to its high data rate services and low round-trip latency. It is low-cost to launch and can provide global coverage. However, the spectrum scarcity might be one of the critical challenges in the growth of LEO satellites, impacting severe restrictions on the development of ground-space integrated networks. To address this issue, we propose RSMA for CR enabled GEO-LEO coexisting satellite network. In particular, this work aims to maximize the system's sum rate by simultaneously optimizing the power allocation and subcarrier beam assignment of LEO satellite communication while restricting the interference temperature to GEO satellite users. The problem of sum rate maximization is formulated as non-convex and a Global optimal solution is challenging to obtain. Therefore, we first employ the successive convex approximation technique to reduce the complexity and make the problem more tractable. Then for the power allocation, we exploit KKT condition and adopt an efficient algorithm based on the greedy approach for subcarrier beam assignment. We also propose two suboptimal schemes with fixed power allocation and random subcarrier beam assignment as the benchmark. Results demonstrate the benefits of the proposed scheme compared to the benchmark schemes.

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