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Management of a Shared-Spectrum Network in Wireless Communications

机译:无线通信中的共享频谱网络管理

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We consider a band of the electromagnetic spectrum with a finite number of identical channels shared by both licensed and unlicensed users. Such a network differs from most many-server, two-class queues in service systems, including call centers, because of the restrictions imposed on the unlicensed users to limit interference to the licensed users. We first approximate the key performance indicators-namely the throughput rate of the system and the delay probability of the licensed users under the asymptotic regime, which requires the analysis of both scaled and unsealed processes simultaneously using the averaging principle. Our analysis reveals a number of distinctive properties of the system. For example, sharing does not affect the level of service provided to the licensed users in an asymptotic sense even when the system is critically loaded. We then study the optimal sharing decisions of the system to maximize the system throughput rate while maintaining the delay probability of the licensed users below a certain level when the system is overloaded. Finally, we extend our study to systems with time-varying arrival rates and propose a diffusion approximation to complement our fluid one.
机译:我们考虑电磁频谱的频带,具有由许可和未许可用户共享的有限数量的相同信道。这种网络与大多数服务器,服务系统中的两班队列不同,包括呼叫中心,因为对未经许可的用户限制对许可用户的干扰限制了限制。我们首先近似关键绩效指标 - 即系统的吞吐率和许可用户在渐近制度下的延迟概率,这需要使用平均原理同时分析缩放和未密切的过程。我们的分析显示了系统的许多独特性质。例如,即使系统批判性地加载,共享不会影响向许可用户提供给许可用户的服务级别。然后,我们研究系统的最佳共享决策,以最大限度地提高系统吞吐率,同时在系统过载时保持许可用户低于一定级别的许可用户的延迟概率。最后,我们将我们的研究扩展到具有时变速率的系统,并提出扩散近似以补充我们的流体。

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