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How CSMA/CA With Deferral Affects Performance and Dynamics in Power-Line Communications

机译:具有延迟的CSMA / CA如何影响电力线通信中的性能和动态

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Power-line communications (PLC) are becoming a key component in home networking, because they provide easy and high-throughput connectivity. The dominant MAC protocol for high data-rate PLC, the IEEE 1901, employs a CSMA/CA mechanism similar to the backoff process of 802.11. Existing performance evaluation studies of this protocol assume that the backoff processes of the stations are independent (the so-called decoupling assumption). However, in contrast to 802.11, 1901 stations can change their state after sensing the medium busy, which is regulated by the so-called deferral counter. This mechanism introduces strong coupling between the stations and, as a result, makes existing analyses inaccurate. In this paper, we propose a performance model for 1901, which does not rely on the decoupling assumption. We prove that our model admits a unique solution for a wide range of configurations and confirm the accuracy of the model using simulations. Our results show that we outperform current models based on the decoupling assumption. In addition to evaluating the performance in steady state, we further study the transient dynamics of 1901, which is also affected by the deferral counter.
机译:电力线通信(PLC)正在成为家庭网络中的关键组件,因为它们提供了简单且高吞吐量的连接性。高数据速率PLC的主要MAC协议IEEE 1901采用CSMA / CA机制,类似于802.11的退避过程。该协议的现有性能评估研究假设站点的退避过程是独立的(所谓的解耦假设)。但是,与802.11相反,1901站可以在感测到介质忙后更改其状态,这由所谓的延迟计数器进行调节。这种机制在站点之间引入了强大的耦合,结果使现有的分析不准确。在本文中,我们提出了1901年的性能模型,该模型不依赖于去耦假设。我们证明了我们的模型为各种配置提供了独特的解决方案,并通过仿真确认了模型的准确性。我们的结果表明,基于去耦假设,我们的表现优于当前模型。除了评估稳态下的性能外,我们还研究了1901年的瞬态动力学,这也受到延期计数器的影响。

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