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Information-carrying based routing protocol for Underwater Acoustic Sensor Network

机译:水下声传感器网络中基于信息承载的路由协议

摘要

In this paper, we tackle one fundamental problem in Underwater Sensor Networks (UASNs), routing. Aiming at many challenges to the Routing protocol design of UASNs, which are bought by the features of UASNs, such as low bandwidth, high latency, dynamics topology resulted by node float mobility, high error probability and so on, a novel reactive routing protocol is proposed, called information-carrying based routing protocol (ICRP), to provide energy efficient, real-time and scalable routing. Because the control packet of establishing path is carried by the data packet, the information-carrying mechanism not only is energy efficient, but also results in low end-to-end delivery delay. it does not depend one the location information of nodes. No state information is required on the sensor nodes and only a small fraction of the nodes are involved in routing. Hence, the protocol is also scalable and is suitable stationary, mobile and hybrid network. We evaluate the performance of ICRP through extensive simulations and physical experiments. Our results show that ICRP can effectively achieve the goals of energy efficiency and low data delivery delay.
机译:在本文中,我们解决了水下传感器网络(UASN)路由中的一个基本问题。针对UASN的路由协议设计面临的诸多挑战,UASN具有以下特点:低带宽,高延迟,节点浮动移动性导致的动态拓扑,高错误概率等,因此,提出了一种新型的无源路由协议。提出了一种称为信息承载的路由协议(ICRP),以提供节能,实时和可扩展的路由。由于建立路径的控制包是由数据包承载的,因此信息承载机制不仅节能高效,而且端到端的传递时延低。它不依赖于节点的位置信息。传感器节点上不需要状态信息,并且路由中仅涉及一小部分节点。因此,该协议也是可扩展的,并且适合于固定,移动和混合网络。我们通过广泛的模拟和物理实验评估ICRP的性能。我们的结果表明,ICRP可以有效地实现能源效率和低数据传递延迟的目标。

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