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A data forwarding algorithm based on estimated Hungarian method for underwater sensor networks

机译:一种基于估计匈牙利水下传感器网络方法的数据转发算法

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With the increasing concern over marine applications in recent years, the technology of underwater wireless sensor networks (UWSNs) has received considerable attention. In UWSNs, the gathered data is sent to terrestrial control center through multi-hops for further processing. UWSNs usually consists of three types of nodes: ordinary nodes, anchor nodes, and sink nodes. The data messages are transferred from an ordinary node or an anchored node to one of the sink nodes by discrete hops. Thus, we propose a Data Forwarding Algorithm based on estimated Hungarian method (DFAH) to improve delivery ratio and reduce transmission delay. The estimated Hungarian method is applied to solve the assignment problem in data forwarding process, where the anchor nodes receive the forwarding requests from ordinary nodes and optimize the waiting queue. Both analysis and simulation results indicate that DFAH has advantages in delivery success rate and transmission delay.
机译:随着近年来海洋应用越来越高的,水下无线传感器网络(UWSNS)的技术得到了相当大的关注。在UWSN中,收集的数据通过多跳来发送到地面控制中心以进行进一步处理。 UWSN通常由三种类型的节点组成:普通节点,锚点节点和宿节点。数据消息由普通节点或锚定节点传送到一个离散的跳跃到一个宿节点。因此,我们提出了一种基于估计的匈牙利方法(DFAH)的数据转发算法,以提高输送比率并降低传输延迟。估计的匈牙利方法应用于解决数据转发过程中的分配问题,其中锚点节点接收来自普通节点的转发请求并优化等待队列。分析和仿真结果均表明DFAH具有交付成功率和传输延迟的优点。

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