基于簇的传感器网络的高效mac层重传算法

Xiaobo Zhang, Heping Wang, A. Khokhar
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引用次数: 6

摘要

在典型的传感器网络应用场景中,事件的发生触发数据收集。在这种情况下,移动汇聚节点移动到感知区域或激活节点作为集群头并从部署在该区域的传感器节点收集数据。在这样的应用中,只有区域内的节点数量是已知的,这使得tdma类型的协议不可行。不同的数据收集算法已经被提出用于这样的应用,旨在减少能源使用,增加吞吐量,或减少延迟。然而,这些解决方案中的大多数都假定了某种形式的无争用MAC协议,这使得它们不太实用。最近提出的基于同步、共享争用窗口(SSCW)的802.11 DCF协议是一种基于争用的解决方案,与基于标准二进制指数回退(BEB)的802.11 DCF和802.15.4 (ZigBee)协议相比,在延迟和吞吐量方面表现出了优越的性能。我们提出了一种基于争用窗口概念的节能算法。我们研究了假设不同竞争窗口大小的方法的能量成本和时间延迟,并确定了给定集群中节点数量的能量成本最小的最优值。与SSCW协议相比,该协议的能效提高了36% ~ 400%,而吞吐量仍在SSCW的82% ~ 75%以内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Energy-efficient MAC-Layer Retransmission Algorithm for Cluster-based Sensor Networks
In a typical sensor network application scenario, occurrence of an event triggers data collection. In such cases, a mobile sink node moves into the sensing area or a node is activated to serve as a cluster head and collect data from the sensor nodes deployed in the area. In such applications, only the number of nodes in the area is known which makes TDMA-type protocols infeasible. Different data collection algorithms have been proposed for such applications aiming at reducing energy usage, increasing throughput, or reducing delay. However, most of those solutions assume some form of contention-free MAC protocol, making them less practical. Recently proposed synchronized, shared contention window (SSCW) based 802.11 DCF protocol is a contention based solution and has demonstrated superior performance in terms of delay and throughput compared with the standard binary exponential backoff (BEB) based 802.11 DCF and 802.15.4 (ZigBee) protocols. We propose an energy-efficient algorithm based on the contention window concept. We study the energy cost and time delay of our method assuming different sizes of the contention window and determine the optimal value that minimizes the energy cost for a given number of nodes in the cluster. Compared with SSCW protocol, the proposed protocol improves energy efficiency by 36%-400% with throughput still within 82%-75% of SSCW.
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