水声传感器网络中机会数据转发的自适应方法

N. Nowsheen, G. Karmakar, J. Kamruzzaman
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引用次数: 12

摘要

由于水声通道的传输延迟长、误差率高,水声传感器网络的可靠数据传输是污染监测、海洋数据采集和监测等应用的主要研究挑战。为了解决这一问题,提出了一种机会数据转发协议,该协议根据链路可靠性和数据传输可达性,在一组候选数据转发器中选择下一跳转发器,以获得较高的数据包发送成功率和较少的路由开销和能量消耗。然而,该协议依赖于固定的数据保持时间方法,即每个节点在启动转发器发现过程之前持有数据包的固定时间。根据固定保持时间的值和部署上下文场景,这可能会导致较大的端到端延迟。此外,在保持时间上缺乏对网络状况的考虑,限制了其性能。在本文中,我们提出了一种自适应技术来提高其性能。自适应方法动态计算每个节点的数据保持时间,考虑了许多“节点和网络”指标,包括当前缓冲区占用率、存储数据包所经历的延迟、到达和服务率、邻居的数据传输和可达性。仿真结果表明,与固定保持时间相比,我们的自适应技术显著降低了端到端延迟,实现了更高的数据传输和更低的数据包成功传输能耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Adaptive Approach to Opportunistic Data Forwarding in Underwater Acoustic Sensor Networks
Reliable data transfer for underwater acoustic sensor networks (UASNs) is a major research challenge in applications such as pollution monitoring, oceanic data collection, and surveillance due to the long propagation delay and high error rate of the acoustic channel. To address this issue, an opportunistic data forwarding protocol was proposed which achieves high packet delivery success ratio with less routing overhead and energy consumption by selecting the next hop forwarder among a set of candidates based on its link reliability and data transfer reach ability. However, the protocol relies on fixed data hold time approach, i.e., Each node holds data packets for a fixed amount of time before a forwarder discovery process is initiated. Depending on the value of the fixed hold time and deployment contextual scenario, this may incur large end-to-end delay. Moreover, lack of consideration of network condition in hold time limits its performance. In this paper, we propose an adaptive technique to improve its performance. The adaptive approach calculates data hold time at each node dynamically considering a number of 'node and network' metrics including current buffer occupancy, delay experienced by stored data packets, arrival and service rate, neighbors' data transmissions and reachability. Simulation results show that compared with fixed hold time approach, our adaptive technique reduces end-to-end delay significantly, achieves considerably higher data delivery and less energy consumption per successful packet delivery.
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