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An Improved Forwarding of Diverse Events with Mobile Sinks in Underwater Wireless Sensor Networks

机译:水下无线传感器网络中带有移动接收器的各种事件的改进转发

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In this paper, a novel routing strategy to cater the energy consumption and delay sensitivity issues in deep underwater wireless sensor networks is proposed. This strategy is named as ESDR: Event Segregation based Delay sensitive Routing. In this strategy sensed events are segregated on the basis of their criticality and, are forwarded to their respective destinations based on forwarding functions. These functions depend on different routing metrics like: Signal Quality Index, Localization free Signal to Noise Ratio, Energy Cost Function and Depth Dependent Function. The problem of incomparable values of previously defined forwarding functions causes uneven delays in forwarding process. Hence forwarding functions are redefined to ensure their comparable values in different depth regions. Packet forwarding strategy is based on the event segregation approach which forwards one third of the generated events (delay sensitive) to surface sinks and two third events (normal events) are forwarded to mobile sinks. Motion of mobile sinks is influenced by the relative distribution of normal nodes. We have also incorporated two different mobility patterns named as; adaptive mobility and uniform mobility for mobile sinks. The later one is implemented for collecting the packets generated by the normal nodes. These improvements ensure optimum holding time, uniform delay and in-time reporting of delay sensitive events. This scheme is compared with the existing ones and outperforms the existing schemes in terms of network lifetime, delay and throughput.
机译:在本文中,提出了一种新颖的路由策略来解决水下无线传感器网络中的能量消耗和延迟敏感性问题。该策略被称为ESDR:基于事件隔离的时延敏感路由。在这种策略中,感知到的事件根据其关键程度进行隔离,并根据转发功能转发给它们各自的目的地。这些功能取决于不同的路由指标,例如:信号质量指数,无本地化的信噪比,能源成本函数和深度相关函数。先前定义的转发功能的值无法比较的问题导致转发过程中的不均匀延迟。因此,转发函数被重新定义以确保它们在不同深度区域的可比值。数据包转发策略基于事件隔离方法,该方法将生成的事件的三分之一(对延迟敏感)转发到表面接收器,而另外三分之二的事件(正常事件)转发到移动接收器。移动接收器的运动受法向节点的相对分布影响。我们还合并了两种不同的移动性模式,分别称为:适用于移动接收器的自适应移动性和统一移动性。后一种用于收集普通节点生成的数据包。这些改进确保了最佳的保持时间,统一的延迟以及对延迟敏感事件的及时报告。将该方案与现有方案进行比较,并且在网络寿命,延迟和吞吐量方面都优于现有方案。

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