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Active node based fault tolerance in Wireless Sensor Network

机译:无线传感器网络中基于活动节点的容错能力

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In this paper, we propose a novel idea of an active node model in Wireless Sensor Network (WSN) to identify the faulty nodes using battery power model and interference model. Fault tolerance against low battery power is designed through hand-off mechanism where in the faulty node selects the neighboring node having highest power and transfers all the services that are to be performed by the faulty node to the selected neighboring node. The hand-off mechanism involves transmitting the connectivity status of a faulty node such as source address, destination address, previous hop address, next hop address and time stamp to selected neighboring node. Fault tolerance against interference is provided by dynamic power level adjustment mechanism by allocating the time slot to all the neighboring nodes. If a particular node wishes to transmit the sensed data, it enters active status and transmits the packet with maximum power; otherwise it enters into sleep status having minimum power that is sufficient to receive hello messages and to maintain the connectivity. The performance evaluation is tested through simulation for packet delivery ratio and control overhead and we see that there is an improvement in the network throughput and reliability.
机译:在本文中,我们提出了一种新的思想,即无线传感器网络(WSN)中的活动节点模型可以使用电池功率模型和干扰模型来识别故障节点。通过切换机制设计针对低电池电量的容错功能,其中在故障节点中选择具有最高功率的相邻节点,并将故障节点要执行的所有服务转移到所选的相邻节点。切换机制涉及将故障节点的连接状态(例如源地址,目标地址,上一跳地址,下一跳地址和时间戳)传输到选定的相邻节点。动态功率电平调整机制通过将时隙分配给所有相邻节点来提供对干扰的容错能力。如果特定节点希望发送感测到的数据,它将进入活动状态并以最大功率发送数据包;否则,它将进入睡眠状态,该睡眠状态具有的最小功率足以接收问候消息并保持连接。通过仿真测试了性能评估的数据包传递率和控制开销,我们发现网络吞吐量和可靠性都有改进。

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