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首页> 外文期刊>IEEE transactions on wireless communications >Resource Allocation for NOMA Based Space-Terrestrial Satellite Networks
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Resource Allocation for NOMA Based Space-Terrestrial Satellite Networks

机译:基于Noma的空间 - 地面卫星网络的资源分配

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摘要

Non-orthogonal multiple access (NOMA) has been extensively studied to improve the performance of space-terrestrial satellite networks on account of the shortage of frequency band resources. In this paper, terrestrial network and satellite network synergistically provide complete coverage for ground users. A user association scheme on account of the channel gain and distance between the ground users and the BSs is proposed to identify the users to be associated by the BSs, and there is an upper limit for the number of users associated with each BS. Then calculate the channel condition ratio to select the users served by the satellite. The all BSs provide service for those unselected users, and the NOMA technology is applied to terrestrial network. Then, a user pairing scheme which maximize the minimum the ground user channel correlation coefficient is formulated to match the terrestrial users in a NOMA group. On account of multiple antennas equipped by the BSs and satellite, beamforming is performed among groups of BSs and among satellite users so as to reduce multi-user interference. In the power allocation scheme, we introduce the alternative direction method of multipliers (ADMM) algotithm so as to optimize system energy efficiency. In addition, the objective function is a non-convex function, so the Dinkelbach-style scheme is presented to convert non-convex function into the convex-form function. Eventually, the performance of the presented algorithm is simulated and compared with the existing NOMA-FTPA algorithm. The results indicate that the presented algorithm has high superiority in system energy efficiency and it can be applied to this network.
机译:已经广泛地研究了非正交多次访问(NOMA),以提高频带资源短缺的空间 - 地面卫星网络的性能。在本文中,地面网络和卫星网络协同为地面用户提供了完整的覆盖范围。提出了一种用户关联方案,用于识别接地用户和BS之间的信道增益和距离以识别由BSS相关联的用户,并且与每个BS相关联的用户数量存在上限。然后计算通道条件比以选择卫星服务的用户。所有BSS为这些未选择的用户提供服务,诺玛技术应用于地面网络。然后,制定最大化地面用户信道相关系数的最大化最小值的用户配对方案以与NOMA组中的地面用户匹配。由于由BSS和卫星配备的多个天线,波束成形是在BSS组和卫星用户中进行的,以减少多用户干扰。在功率分配方案中,我们介绍乘法器(ADMM)算法的替代方向方法,以优化系统能效。另外,目标函数是非凸函数,因此提出了Dinkelbach式方案以将非凸起函数转换为凸形函数。最终,模拟了所提出的算法的性能并与现有的NOMA-FTPA算法进行比较。结果表明,所示的算法在系统能量效率方面具有高优势,并且可以应用于该网络。

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