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Resource Allocation Scheme for Millimeter Wave-Based WPANs Using Directional Antennas

机译:使用定向天线的基于毫米波的WPAN的资源分配方案

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In this paper, we consider a resource allocation scheme for millimeter-wave-based wireless personal area networks using directional antennas. This scheme involves scheduling the reservation period of medium access control for IEEE 802.15.3c. Objective functions are considered to minimize the average delay and maximize throughput; and two scheduling algorithms—namely, MInMax concurrent transmission and MAxMin concurrent transmission—are proposed to provide a suboptimal solution to each objective function. These are based on an exclusive region and two decision rules that determine the length of reservation times and the transmission order of groups. Each group consists of flows that are concurrently transmittable via spatial reuse. The algorithms appropriately apply two decision rules according to their objectives. A real video trace is used for the numerical results, which show that the proposed algorithms satisfy their objectives. They outperform other schemes on a range of measures, showing the effect of using a directional antenna. The proposed scheme efficiently supports variable bit rate traffic during the reservation period, reducing resource waste.
机译:在本文中,我们考虑了使用定向天线的基于毫米波的无线个人局域网的资源分配方案。此方案涉及为IEEE 802.15.3c调度媒体访问控制的保留期。目标函数被认为是最小化平均延迟和最大化吞吐量;提出了两种调度算法,即MInMax并发传输和MAxMin并发传输,为每个目标函数提供了次优的解决方案。这些基于排他区域和两个决定规则,这些规则确定预留时间的长度和组的传输顺序。每个组由可通过空间复用同时传输的流组成。该算法根据其目标适当地应用两个决策规则。真实视频轨迹用于数值结果,表明所提出的算法满足其目标。它们在一系列措施上均优于其他方案,显示了使用定向天线的效果。所提出的方案在保留期内有效地支持可变比特率业务,从而减少了资源浪费。

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