具有多包接收能力和空间分布节点的网络MAC

G. Çelik, G. Zussman, Wajahat F. Khan, E. Modiano
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引用次数: 62

摘要

未来无线网络的物理层将以超宽带和MIMO等新型无线电技术为基础。这种技术的一个重要功能是能够同时捕获几个数据包。这种能力有可能提高MAC层的性能。然而,我们表明,在具有空间分布式节点的网络中,重用最初为窄带系统(例如CSMA/CA)设计的回退机制是低效的。众所周知,当具有空间分布节点的网络使用这种MAC协议运行时,通道可能被靠近目的地的节点捕获,从而导致不公平。我们表明,当物理层支持多包接收时,重用遗留协议的负面影响不仅包括这种不公平,还包括吞吐量的显著降低。我们提出了备选退退机制,并通过马尔可夫分析和模拟评估其性能。我们展示了我们的备选回退机制可以提高总体吞吐量和公平性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MAC for Networks with Multipacket Reception Capability and Spatially Distributed Nodes
The physical layer of future wireless networks will be based on novel radio technologies such as UWB and MIMO. One of the important capabilities of such technologies is the ability to capture a few packets simultaneously. This capability has the potential to improve the performance of the MAC layer. However, we show that in networks with spatially distributed nodes, reusing backoff mechanisms originally designed for narrow-band systems (e.g. CSMA/CA) is inefficient. It is well known that when networks with spatially distributed nodes operate with such MAC protocols, the channel may be captured by nodes that are near the destination, leading to unfairness. We show that when the physical layer enables multipacket reception, the negative implications of reusing the legacy protocols include not only such unfairness but also a significant throughput reduction. We present alternative backoff mechanisms and evaluate their performance via Markovian analysis and simulation. We show that our alternative backoff mechanisms can improve both overall throughput and fairness.
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