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An Energy Scaled and Expanded Vector-Based Forwarding Scheme for Industrial Underwater Acoustic Sensor Networks with Sink Mobility

机译:具有水槽移动性的工业水下声传感器网络的基于能量尺度和扩展矢量的转发方案

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摘要

Industrial Underwater Acoustic Sensor Networks (IUASNs) come with intrinsic challenges like long propagation delay, small bandwidth, large energy consumption, three-dimensional deployment, and high deployment and battery replacement cost. Any routing strategy proposed for IUASN must take into account these constraints. The vector based forwarding schemes in literature forward data packets to sink using holding time and location information of the sender, forwarder, and sink nodes. Holding time suppresses data broadcasts; however, it fails to keep energy and delay fairness in the network. To achieve this, we propose an Energy Scaled and Expanded Vector-Based Forwarding (ESEVBF) scheme. ESEVBF uses the residual energy of the node to scale and vector pipeline distance ratio to expand the holding time. Resulting scaled and expanded holding time of all forwarding nodes has a significant difference to avoid multiple forwarding, which reduces energy consumption and energy balancing in the network. If a node has a minimum holding time among its neighbors, it shrinks the holding time and quickly forwards the data packets upstream. The performance of ESEVBF is analyzed through in network scenario with and without node mobility to ensure its effectiveness. Simulation results show that ESEVBF has low energy consumption, reduces forwarded data copies, and less end-to-end delay.
机译:工业水下声传感器网络(IUASN)面临着固有的挑战,例如传播延迟长,带宽小,能耗大,三维部署,部署和电池更换成本高。为IUASN建议的任何路由策略都必须考虑这些约束。文献中基于矢量的转发方案使用发送者,转发者和接收器节点的保持时间和位置信息将数据包转发到接收器。保持时间可以抑制数据广播;但是,它不能保持能量并延迟网络的公平性。为实现此目的,我们提出了一种基于能量的扩展和基于矢量的转发(ESEVBF)方案。 ESEVBF使用节点的剩余能量来缩放和矢量管道距离比,以延长保持时间。所得到的所有转发节点的保持时间的缩放和扩展具有显着的差异,可以避免多次转发,从而减少了网络中的能耗和能量平衡。如果一个节点在其邻居之间的保留时间最短,则它会缩短保留时间并快速向上游转发数据包。通过在有或没有节点移动性的网络场景中分析ESEVBF的性能,以确保其有效性。仿真结果表明,ESEVBF具有较低的能耗,减少了转发的数据副本以及更少的端到端延迟。

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