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首页> 外文期刊>International Journal of Distributed Sensor Networks >A Cost-Effective Design for Combining Sensing Robots and Fixed Sensors for Fault-Tolerant Linear Wireless Sensor Networks
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A Cost-Effective Design for Combining Sensing Robots and Fixed Sensors for Fault-Tolerant Linear Wireless Sensor Networks

机译:用于容错线性无线传感器网络的传感机器人和固定传感器组合的经济高效设计

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Wireless sensor networks (WSNs) can be used to monitor long linear structures such as pipelines, rivers, railroads, international borders, and high power transmission cables. In this case a special type of WSN called linear wireless sensor network (LSN) is used. One of the main challenges of using LSN is the reliability of the connections among the nodes. Faults in a few contiguous nodes may cause the creation of holes which will result in dividing the network into multiple disconnected segments. As a result, sensor nodes that are located between holes may not be able to deliver their sensed information which negatively affects the network’s sensing coverage. Sensing robots can be used to overcome these faults and enhance the coverage. Sensing robots provide additional sensing coverage and restore the connectivity among disconnected segments. This paper develops a cost-effective design for robot-assisted fault-tolerant LSN. In this design the numbers of fixed sensor nodes and mobile sensing robots are determined such that the required reliability and sensing coverage levels are maintained while the total cost is minimized. The paper covers both uniformly and randomly deployed sensors LSNs.
机译:无线传感器网络(WSN)可用于监视长的线性结构,例如管道,河流,铁路,国际边界​​和大功率传输电缆。在这种情况下,将使用一种称为线性无线传感器网络(LSN)的特殊WSN。使用LSN的主要挑战之一是节点之间连接的可靠性。几个连续节点中的故障可能会导致漏洞的产生,这将导致将网络划分为多个断开的网段。结果,位于孔之间的传感器节点可能无法传递其感测到的信息,从而对网络的感测范围产生负面影响。传感机器人可以用来克服这些故障并扩大覆盖范围。感应机器人可提供更多的感应范围,并恢复断开的网段之间的连接。本文为机器人辅助的容错LSN开发了一种经济高效的设计。在此设计中,确定固定传感器节点和移动感应机器人的数量,以便在使总成本最小化的同时,保持所需的可靠性和感应覆盖范围。本文涵盖了统一部署和随机部署的传感器LSN。

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