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Topology control through depth adjustment and transmission power control for UWSN routing protocols

机译:通过深度调整和UWSN路由协议的传输功率控制进行拓扑控制

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Recently Underwater Sensor Networks (UWSNs) have been suggested as a powerful technology for many civilian and military applications, such as tactical surveillance. The most important issue in these networks is the communication, mainly due to the presence of fading, multi-path and refractive properties of the sound channel, this necessitate the development of precise underwater channel model for each application and provide an efficient routing protocol that consider the energy constraint of underwater nodes and resolve the problem of disconnected nodes. In this work, we study the impact of two topology control methods, that are used to resolve the problem of void/isolated nodes appeared in geographic routing protocols, in network performance. Simulation results of topology control through Depth adjustment DA and Transmission Power Controls TPC showed a significant reduction of the number of void/isolated nodes.
机译:最近,水下传感器网络(UWSN)被建议作为一种强大的技术用于许多民用和军事应用,例如战术监视。这些网络中最重要的问题是通信,这主要是由于声音通道的衰落,多径和折射特性的存在,因此有必要为每种应用开发精确的水下通道模型,并提供一种有效的路由协议来考虑解决了水下节点的能量约束问题,解决了节点断开的问题。在这项工作中,我们研究了两种拓扑控制方法的影响,这些方法用于解决地理路由协议中出现的无效/隔离节点的问题,并影响网络性能。通过深度调整DA和传输功率控制TPC进行拓扑控制的仿真结果表明,空隙/隔离节点的数量显着减少。

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