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On the Design of Opportunistic MAC Protocols for Multihop Wireless ; Networks with Beamforming Antennas

机译:多跳无线机会MAC协议的设计2。带有波束成形天线的网络

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Beamforming antennas promise a significant increase in the spatial reuse of the wireless medium when deployed in multihop wireless networks. However, existing directional Medium Access Control (MAC) protocols with the default binary exponential backoff mechanism are not capable of fully exploiting the offered potential. In this paper, we discuss various issues involved in the design of MAC protocols specific for beamforming antennas. Based on our discussion, we argue that the traditional binary exponential backoff mechanism limits the possible spatial reuse and aggravates some beamforming-related problems such as deafness and head-of-line blocking. To grasp the transmission opportunities offered by beamforming antennas, we design an Opportunistic Directional MAC (OPDMAC) protocol for multihop wireless networks. The OPDMAC protocol employs a novel backoff mechanism in which the node is not forced to undergo idle backoff after a transmission failure but can rather take the opportunity of transmitting other outstanding packets in other directions. This mechanism minimizes the idle waiting time and increases the channel utilization significantly and thereby enables OPDMAC to enhance the spatial reusability of the wireless medium and reduce the impact of the deafness problem without additional overhead. Through extensive simulations, we demonstrate that OPDMAC enhances the performance in terms of throughput, delay, packet delivery ratio, and fairness. To further improve its performance, we discuss and evaluate the benefits of carefully choosing some protocol parameters instead of using the default values commonly used by other directional MAC protocols.
机译:当部署在多跳无线网络中时,波束成形天线有望大大提高无线介质的空间复用率。但是,具有默认二进制指数退避机制的现有定向媒体访问控制(MAC)协议无法完全利用所提供的潜力。在本文中,我们讨论了专用于波束成形天线的MAC协议设计中涉及的各种问题。根据我们的讨论,我们认为传统的二进制指数补偿机制限制了可能的空间重用,并加剧了一些与波束成形相关的问题,例如耳聋和行首阻塞。为了掌握波束成形天线提供的传输机会,我们为多跳无线网络设计了机会定向MAC(OPDMAC)协议。 OPDMAC协议采用了一种新颖的退避机制,其中在传输失败后不强制节点进行空闲退避,而是可以利用在其他方向上传输其他未完成的数据包的机会。该机制使空闲等待时间最小化,并显着提高了信道利用率,从而使OPDMAC能够增强无线介质的空间可重用性,并在没有额外开销的情况下减少耳聋问题的影响。通过广泛的仿真,我们证明了OPDMAC在吞吐量,延迟,数据包传递率和公平性方面均提高了性能。为了进一步提高其性能,我们讨论并评估了谨慎选择某些协议参数而不是使用其他定向MAC协议通常使用的默认值的好处。

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