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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Improved energy-balanced algorithm for underwater wireless sensor network based on depth threshold and energy level partition
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Improved energy-balanced algorithm for underwater wireless sensor network based on depth threshold and energy level partition

机译:基于深度阈值和能级分区的水下无线传感器网络改进的能量平衡算法

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Abstract Considering the insufficient global energy consumption optimization of the existing routing algorithms for Underwater Wireless Sensor Network (UWSN), a new algorithm, named improved energy-balanced routing (IEBR), is designed in this paper for UWSN. The algorithm includes two stages: routing establishment and data transmission. During the first stage, a mathematical model is constructed for transmission distance to find the neighbors at the optimal distances and the underwater network links are established. In addition, IEBR will select relays based on the depth of the neighbors, minimize the hops in a link based on the depth threshold, and solve the problem of data transmission loop. During the second stage, the links built in the first stage are dynamically changed based on the energy level (EL) differences between the neighboring nodes in the links, so as to achieve energy balance of the entire network and extend the network lifetime significantly. Simulation results show that compared with other typical energy-balanced routing algorithms, IEBR presents superior performance in network lifetime, transmission loss, and data throughput.
机译:摘要考虑到了水下无线传感器网络(UWSN)的现有路由算法的全局能耗优化不足,在本文中设计了一种新的算法,称为改进的能量平衡路由(IBR),用于UWSN。该算法包括两个阶段:路由建立和数据传输。在第一阶段期间,构造数学模型以用于传输距离,以找到最佳距离处的邻居,并且建立了水下网络链路。此外,IEBR将基于邻居的深度选择继电器,基于深度阈值最小化链路中的跳跃,并解决数据传输循环的问题。在第二阶段,基于链路中的相邻节点之间的能级(EL)差异动态地改变第一阶段的链路,以实现整个网络的能量平衡并显着扩展网络寿命。仿真结果表明,与其他典型的能量平衡路由算法相比,IEBR在网络寿命,传输损耗和数据吞吐量中呈现出优异的性能。

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