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Multiuser Diversity Scheduling in Free-Space Optical Communications

机译:自由空间光通信中的多用户分集调度

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摘要

A point-to-multipoint system consisting of an optical transmitter (known as the central node) equipped with apertures, and users communicating over free-space optical (FSO) channels is considered. It is assumed that each link suffers from weak-turbulence conditions. The main goal of this paper is to analyze the performance of the system for various multiuser diversity scheduling schemes in terms of the turbulence strength, from the throughput and the latency perspectives. It is demonstrated that for the proposed system with low turbulence strength, the greedy scheduling scheme (i.e., the central node serves at each time slot the user with the best channel characteristics) achieves the maximum system throughput among various scheduling algorithms at the cost of a large latency. We extend the well-known RF concepts of multiuser diversity to FSO communications. In particular, we show that the Proportional Fair Scheduling with Exponential Rule (PFS/ER) scheme achieves the minimum latency. In addition, the results demonstrate that for point-to-multipoint FSO systems with low turbulence strengths, using the proportional fair scheduling (PFS) has no diversity gain over other schemes. Finally, two new scheduling algorithms are introduced to achieve a tradeoff between the throughput and the latency in FSO-based systems.
机译:考虑了一种点对多点系统,该系统由配备有光圈的光发射器(称为中央节点)和通过自由空间光(FSO)通道进行通信的用户组成。假定每个链节都具有弱湍流条件。本文的主要目的是从吞吐率和等待时间的角度,根据湍流强度分析各种多用户分集调度方案的系统性能。结果表明,对于拟议的低湍流强度的系统,贪婪的调度方案(即,中央节点在每个时隙为具有最佳信道特性的用户服务)以各种代价在各种调度算法中实现了最大的系统吞吐量。大延迟。我们将多用户多样性的著名RF概念扩展到FSO通信。特别是,我们证明了带指数规则的比例公平调度(PFS / ER)方案可实现最小延迟。此外,结果表明,对于湍流强度较低的点对多点FSO系统,使用比例公平调度(PFS)与其他方案相比,没有分集增益。最后,引入了两种新的调度算法,以在基于FSO的系统中实现吞吐量和延迟之间的折衷。

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