低能量自组织传感器网络中的可靠数据传输

K. Daabaj, M. Dixon, Terry Koziniec, David Murray
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引用次数: 9

摘要

数据的可靠传输是面向可靠性的无线传感器网络(WSNs)采集路由协议的经典设计目标。通过仔细选择无错误的链路,快速从丢包中恢复,避免中继传感器节点过载,可以保证数据包的传输性能。由于单个传感器节点的资源有限,通常需要在数据包传输的能量消耗和适当的可靠性水平之间进行权衡。由于链路故障和数据包丢失是不可避免的,传感器网络可以容忍一定程度的可靠性,而不会显著影响数据包的传输性能和数据聚合精度,从而有利于有效的能源消耗。但是,需要一定程度的可靠性,特别是当源传感器节点和基站之间的跳数增加时,因为单个数据包的丢失可能导致沿较长跳数丢失大量聚合数据。一种有效的解决方案是在能量、可靠性、成本和敏捷性之间进行权衡,同时改进报文的传输,保持低报文错误率,减少不必要的报文传输,并自适应地减少控制流量,以提高代表性数据包的成功接收率。在此基础上提出的路由协议即使在高链路故障率的情况下,也能实现适中的能耗和较高的包投递率。所提出的路由协议在Crossbow的TelosB motes测试平台上进行了实验研究,并被证明比目前的TinyOS2实现更具鲁棒性和能效。x MultihopLQI。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliable data delivery in low energy ad hoc sensor networks
Reliable delivery of data is a classical design goal for reliability-oriented collection routing protocols for ad hoc wireless sensor networks (WSNs). Guaranteed packet delivery performance can be ensured by careful selection of error free links, quick recovery from packet losses, and avoidance of overloaded relay sensor nodes. Due to limited resources of individual senor nodes, there is usually a trade-off between energy spending for packets transmissions and the appropriate level of reliability. Since link failures and packet losses are unavoidable, sensor networks may tolerate a certain level of reliability without significantly affecting packets delivery performance and data aggregation accuracy in favor of efficient energy consumption. However a certain degree of reliability is needed, especially when hop count increases between source sensor nodes and the base station as a single lost packet may result in loss of a large amount of aggregated data along longer hops. An effective solution is to jointly make a trade-off between energy, reliability, cost, and agility while improving packet delivery, maintaining low packet error ratio, minimizing unnecessary packets transmissions, and adaptively reducing control traffic in favor of high success reception ratios of representative data packets. Based on this approach, the proposed routing protocol can achieve moderate energy consumption and high packet delivery ratio even with high link failure rates. The proposed routing protocol was experimentally investigated on a testbed of Crossbow's TelosB motes and proven to be more robust and energy efficient than the current implementation of TinyOS2.x MultihopLQI.
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