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Performance analysis of Block ACK-Based Slotted ALOHA for wireless networks with long propagation delay

机译:具有长传播延迟的无线网络基于块ACK的时隙ALOHA的性能分析

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Recently, many variants of Slotted ALOHA (S-ALOHA) have been proposed to solve a problem of performance degradation in wireless networks with long propagation delay. However, they do not consider the effect of retransmission, which also largely degrades performance, and do not provide any analytical model that considers the effect. In this paper, we design a variant of S-ALOHA to support retransmission and derive analytical models that do consider its effect. The designed scheme has a framed structure that starts with a coordinators beacon. The beacon consists of a coordinators timestamp and Block ACKnowledgment (B-ACK). Using the timestamp, a node estimates propagation delay to the coordinator (PDC) in order to reduce guard time while transmitting a packet. Moreover, B-ACK is used to report the results of all transmissions attempted in the previous frame at once. As a result, the designed scheme can largely reduce the number of feedbacks and waste of guard time. Even if there is no analytical model that considers the long propagation delay and retransmission simultaneously, we choose the existing analytical models that consider a framed structure and B-ACK as reference models. However, they are not fully mathematical and partially use simulation results because of high computational complexity. Moreover, these models only analyze stability and throughput as performance metrics. On the other hand, our analytical models are fully mathematical models and can analyze all metrics, such as stability, throughput, and packet delay. We expect our analytical models to be a foundation for deriving fully mathematical models for variants of S-ALOHA using a framed structure and B-ACK. (C) 2016 Elsevier B.V. All rights reserved.
机译:近来,已提出了时隙ALOHA(S-ALOHA)的许多变型来解决具有长传播延迟的无线网络中的性能下降的问题。但是,他们没有考虑重传的影响,这也会大大降低性能,并且没有提供任何考虑该影响的分析模型。在本文中,我们设计了S-ALOHA的变体来支持重传,并得出了考虑其影响的分析模型。设计的方案具有以协调器信标开头的框架结构。信标由协调器时间戳和块确认(B-ACK)组成。节点使用时间戳估计向协调器(PDC)的传播延迟,以减少传输数据包时的保护时间。此外,B-ACK用于一次报告上一帧中所有尝试发送的结果。结果,所设计的方案可以大大减少反馈的数量并减少保护时间。即使没有同时考虑长传播延迟和重传的分析模型,我们也会选择考虑框架结构和B-ACK作为参考模型的现有分析模型。但是,由于计算复杂度高,它们不是完全数学的,而是部分使用仿真结果。而且,这些模型仅将稳定性和吞吐量作为性能指标进行分析。另一方面,我们的分析模型是完全数学模型,可以分析所有指标,例如稳定性,吞吐量和数据包延迟。我们希望我们的分析模型能够为使用框架结构和B-ACK推导S-ALOHA变体的完整数学模型奠定基础。 (C)2016 Elsevier B.V.保留所有权利。

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