多通道MAC协议性能评估研究

Marcos F. Caetano, J. Bordim
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引用次数: 0

摘要

具有无线通信功能的设备数量正在快速增加。这种增加加剧了对有效的媒体访问控制协议的要求。事实上,提供对多个信道的并发访问从而提高吞吐量和减少信道访问延迟的可能性已经得到了广泛的研究。在提供多通道访问的备选方案中,有专用控制通道(DCC)、单会合(SR)和平行会合(PR)协议。这些协议的目标是提供对多个正交通道的通道访问进行管理的方法。这些协议通常在理想环境中进行评估,在理想环境中,它们已经显示出在吞吐量方面提供了显著的改进。然而,当面对现实设置时,这些协议的性能是未知的。这项工作的主要贡献是对多通道访问控制协议进行了评估。绩效评估侧重于确定DCC、SR和PR策略的主要优势和局限性。这些策略已经在使用MiXiM框架的omnet++模拟器中实现。仿真结果表明,当源-目的对限制在同一信道序列中时,PR策略具有较高的吞吐量。然而,由于丢失接收方问题,当源节点和目的节点不知道彼此的位置时,PR策略的吞吐量会大幅下降。事实上,在渠道数量有限的情况下,SR和DCC策略的表现与PR策略的结果相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Performance Evaluation of Multi-channel MAC Protocols
The number of devices enhanced with wireless communication capabilities is increasing at a fast pace. Such increase has exacerbated the quest for efficient medium access control protocols. In fact, the possibility of providing concurrent access to multiple channels, thus increasing throughput and reducing channel access delays, has been widely investigated. Among the alternatives for providing multi-channel access is the dedicated control channel (DCC), the single rendezvous (SR) and the parallel rendezvous (PR) protocols. The goal of these protocols is to provide the means for managing channel access to multi, orthogonal, channels. These protocols are often evaluated in ideal settings where they have shown to provide significant improvements in terms of throughput. However, when confronted with a realistic setting, the performance of such protocols is unknown. The main contribution of this work is to present an evaluation of multi-channel access control protocols. The performance evaluation focuses on identifying the key benefits and limitations of the DCC, SR and PR strategies. These strategies have been implemented in the OMNET++ simulator using the MiXiM framework. The simulation results show that the PR strategy obtains higher throughput when source-destination pairs are confined to the same channel sequence. However, due to missing receiver problems, which occurs when source and destination nodes do not know about each other's whereabouts, the throughput of the PR strategy decays considerably. In fact, with a limited number of channels, the performance of the SR and DCC strategies provide similar results as that of the PR strategy.
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