基于争用接入周期的毫米波无线局域网自适应波束宽度选择

K. Joshi, R. V. Prasad, I. Niemegeers, A. Biswas
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引用次数: 35

摘要

60 GHz无线局域网(wlan)标准(例如,IEEE 802.11ad和IEEE 802.15.3c)采用混合MAC协议,包括使用CSMA/CA的基于争用的访问以及使用时分多址(TDMA)的专用服务周期。为了在协议的竞争部分提供信道访问,定义了准全向(QO)天线模式,它跨越特定的空间方向并覆盖接入点周围的有限区域。在本文中,我们提出了一种算法来确定每个QO电平的波束宽度。该算法考虑节点的空间分布,自适应地分配各QO层的波束宽度,使信道利用率最大化,满足所需的链路预算准则。由于所提出的算法最大限度地减少了冲突,它也最大限度地减少了在QO级别上传输总数据包所需的平均时间。在给定的网络参数下,该算法将平均信道利用率提高了20-30%,将总数据包的传输时间减少了40-50%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive beamwidth selection for contention based access periods in millimeter wave WLANs
60 GHz wireless local area networks (WLANs) standards (e.g., IEEE 802.11ad and IEEE 802.15.3c) employ hybrid MAC protocols consisting of contention based access using CSMA/CA as well as dedicated service periods using time division multiple access (TDMA). To provide the channel access in the contention part of the protocol, quasi omni (QO) antenna patterns are defined which span over the particular spatial directions and cover a limited area around access points. In this paper, we propose an algorithm to determine the beamwidth of each QO level. The proposed algorithm takes into account the spatial distribution of nodes to allocate the beamwidth of each QO level in an adaptive fashion in order to maximizes the channel utilization and satisfy the required link budget criterion. Since the proposed algorithm minimizes the collisions, it also minimizes the average time required to transmit total packets in a QO level. Proposed algorithm improves the average channel utilization up to 20-30% and reduces the time required to transmit total packets up to 40-50% for the given network parameters.
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