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首页> 外文期刊>Communications Letters, IEEE >ADMAC with Integrated Destination Discovery for Ad Hoc Networks
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ADMAC with Integrated Destination Discovery for Ad Hoc Networks

机译:AdMAC具有集成目标发现的ADMAC

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摘要

Directional antennas have shown to increase spatial reuse by allowing multiple transmitters and receivers to concurrently communicate using directional beams as long as they do not significantly interfere with each other. This appreciably increases average aggregate throughput of the network. Generally, for high throughput performance the directional MAC (Medium Access Control) protocols choose a random direction for destination's location and subsequent data transmissions. Under situations of heavy load, high mobility and narrow beam-width, frequent updates are required to track the destinations. However, frequent updates may degrade the effective throughput of the network. Hence, we propose a novel Adaptive Directional MAC (ADMAC) protocol with integrated destination discovery that estimates destination's possible search span and then initiates transmission in that search span direction. Another major contribution is the average throughput performance comparison between last sector (LS), random sector (RS) and search span approaches. Average throughput results show an improvement of up to 40 % and greater than 400 %, when compared to the LS and the RS based DMAC protocols, respectively.
机译:定向天线已显示出通过允许多个发射器和接收器使用定向波束同时进行通信来提高空间复用性,只要它们之间不会显着干扰。这明显增加了网络的平均总吞吐量。通常,为了获得高吞吐量性能,定向MAC(媒体访问控制)协议会为目标位置和后续数据传输选择随机方向。在高负载,高移动性和窄波束宽度的情况下,需要频繁更新以跟踪目的地。但是,频繁的更新可能会降低网络的有效吞吐量。因此,我们提出了一种带有集成目标发现的新颖的自适应方向MAC(ADMAC)协议,该协议可以估计目标的可能搜索范围,然后在该搜索范围方向上发起传输。另一个主要的贡献是最后一个扇区(LS),随机扇区(RS)和搜索范围方法之间的平均吞吐性能比较。与分别基于LS和基于RS的DMAC协议相比,平均吞吐量结果显示最多可提高40%,并超过400%。

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