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Performance of a burst-frame-based CSMA/CA protocol for high data rate ultra-wideband networks

机译:基于突发帧的CSMA / CA协议进行高数据速率超宽带网络的性能

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Ultra-wideband (UWB) is a promising technology that can support high data rate communication for future Wireless Personal Area Networks (WPANs). To provide high throughput in UWB networks, we proposed a general framework for CSMA/CA based MAC protocol previously [17]. In this framework, multiple upper layer packets can be assembled into a single burst frame at the MAC layer, which can significantly improve the throughput performance by reducing overheads. Nevertheless, the burst assembly procedure may introduce extra packet delay, which is undesirable for some applications. In this paper, we address the performance issue in the burst-frame-based MAC protocol. In particular, we develop an analytical model to evaluate the delay performance of the burst-frame-based MAC protocol under unsaturated conditions. Our delay analysis is unique in that we consider the end-to-end packet delay, which is the duration from the epoch that a packet enters the queue at the MAC layer of the transmitter side to the epoch that the packet is successfully received at the receiver side. The analytical results give excellent agreement with the simulation results, which represents the accuracy of our analytical model. The results also provide important guideline on how to set the parameters of the burst assembly policy. Based on these results, we develop an efficient adaptive burst assembly policy so as to optimize the throughput and delay performance of the burst-frame-based CSMA/CA protocol.
机译:超宽带(UWB)是一种有希望的技术,可以支持未来无线个人区域网络(WPAN)的高数据速率通信。为了在UWB网络中提供高吞吐量,我们为先前的CSMA / CA MAC协议提出了一般框架[17]。在该框架中,可以将多个上层分组组装成MAC层的单个突发帧,这可以通过减少开销来显着提高吞吐量性能。然而,突发装配过程可能引入额外的分组延迟,这对于某些应用是不希望的。在本文中,我们解决了基于突发帧的MAC协议中的性能问题。特别是,我们开发一个分析模型来评估在不饱和条件下基于突发帧的MAC协议的延迟性能。我们的延迟分析是唯一的,因为我们考虑了端到端的分组延迟,这是数据包在发射机侧的MAC层的队列中的阶段到纪念于时代的持续时间接收器侧。分析结果与模拟结果提供了良好的一致性,这代表了我们分析模型的准确性。结果还提供了如何设置突发装配策略参数的重要指导。基于这些结果,我们开发了一个有效的自适应突发组装策略,以便优化基于突发帧的CSMA / CA协议的吞吐量和延迟性能。

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