许可共享访问下多波束卫星的线性预编码

M. Vázquez, A. Pérez-Neira, M. Lagunas
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引用次数: 2

摘要

由于频谱的稀缺性,目前的趋势是提供新的共享接入许可,以提高整体频谱效率。在这种背景下,许可证共享访问(LSA)作为一种替代目前主导无线通信的排他性许可和免许可机制而出现。LSA在一定条件下为给定的一组用户提供共享访问,为了促进频谱的共享使用,必须对这些条件进行优化,同时对产生的干扰保持一定的限制。在本文中,我们考虑了卫星和地面无线服务提供商共享一个给定频带的LSA系统。LSA场景的约束基本归结为对覆盖区域内接收信号功率的控制。重点研究了多波束卫星系统中的预编码方案,将卫星用户终端的接收功率限制在一定的阈值以内。目的是使地面无线业务提供商观察到卫星信号功率强度在某一值下,使两种业务和平共处。为了满足接收机功率的限制,对两种传统的线性预编码技术进行了适当的改进。就最大可实现的和速率而言,最佳预编码器的结果是零强迫(ZF),然而,就发射机使用的bps/Hz单位功率而言,所谓的最小均方误差(MMSE)表现出比ZF更好的功率效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linear precoding in multibeam satellite under licensed shared access
Due to the scarcity of the spectrum, there is a current tendency to offer novel shared access licenses in order to increase the overall spectral efficiency. Under this context, license shared access (LSA) has appeared as an alternative to the exclusive license and license-exempt mechanisms, which so far have dominated the wireless communications. LSA provides shared access to a given set of users under certain conditions which must be optimized in order to foster the shared use of the spectrum, while maintaining certain restrictions on the generated interference. In this paper we consider a LSA system where both satellite and terrestrial wireless service providers share a given frequency band. Basically, the constraints in the LSA scenario reduce to the control of the received signal power within the coverage area. We focus on the precoding scheme in multi-beam satellite systems restricting the received power of the satellite user terminals to be under certain threshold. The objective is that the terrestrial wireless service provider observes the satellite signal power strength under a certain value, providing a peaceful coexistence between both services. Two traditional linear precoding techniques are properly modified in order to satisfy the receiver power constraints. The optimum precoder results to be zero forcing (ZF), in terms of maximum achievable sum-rate, nevertheless the so-called minimum mean square error (MMSE) exhibits better power efficiency than the ZF, in terms of bps/Hz unit power used at the transmitter.
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