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Maximum Achievable Sum Rate in Highly Dynamic Licensed Shared Access

机译:高度动态许可的共享访问中最大可实现的总和率

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In this paper, we propose a novel power allocation scheme that maximizes the sum spectral efficiency of the licensee in a dynamic Licensed Shared Access (LSA) system. In particular, our focus is on the time intervals in which the incumbent system is active in the spectrum. We derive an expression for the interference distribution of the licensee, e.g., a mobile network operator, utilizing a spectrum belonging to an airport incumbent under the LSA spectrum sharing. Formulating an optimization problem to maximize the sum spectrum efficiency subject to the interference threshold constraint at the licensee, we then show its convexity, and obtain its optimal solutions. We further investigate the impact of sum rate maximization on the fairness of network resource allocations. Simulation results show a significant gain in the achievable spectrum efficiency, especially during the intervals in which the incumbent system is active in the LSA band. This paper provides quantitative insights on the maximum achievable sum rate in an LSA system in which both the licensee and the incumbent systems are active at the same time.
机译:在本文中,我们提出了一种新的功率分配方案,可以在动态许可的共享访问(LSA)系统中最大化许可人的总和谱效率。特别是,我们的重点是现任系统在频谱中活跃的时间间隔。我们派生了被许可人的干扰分布的表达,例如移动网络运营商,利用位于LSA频谱共享下的机场的频谱。制定优化问题,以最大化持有许可人的干扰阈值的总和频谱效率,然后显示其凸起,并获得其最佳解决方案。我们进一步调查了总和率最大化对网络资源分配公平性的影响。仿真结果显示了可实现的频谱效率的显着增益,尤其是在现任系统在LSA频带中有效的间隔期间。本文提供了对LSA系统中最大可实现的总和速率的定量见解,其中许可人和现任系统同时处于活动状态。

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