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Enhanced Adaptive Geographic Opportunistic Routing with Interference Avoidance Assisted with Mobile Sinks for Underwater Wireless Sensor Network

机译:带有无线接收器的水下无线传感器网络辅助干扰的增强型自适应地理机会路由

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Acoustic communication in Underwater Wireless Sensor Networks (WSNs) is limited due to distinctive attributes including communication channel high latency, multi-path fading and exponential degrading on signal due to dynamic noise characteristics. Inappropriate selection of forwarder node leads to dramatic death due to inefficient, unbalanced energy depletion that results in creation of void hole for neighboring nodes. In most of scenarios, forwarder nodes are over penalized by selecting same node all the time. Enhanced adaptive mechanism is proposed to cater over penalization of forwarder node by adaptively lowering the priority of node gradually along with residual energy. Proposed routing protocols are based on geoopportunistic routing paradigm based on interference avoidance which is assisted by mobile sinks. More specific and unified routing decisions are formed by dividing the whole network field into cubes. Forwarder nodes are elected on geographic location of neighboring cubes depending on packet delivery probability. Void node recovery mechanism is also proposed and evaluated by deploying mobile sink to directly gather data from void nodes. Extensive simulations are performed to evaluate the proposed work. Simulations prove that proposed work significantly increases packet delivery and decrease fraction of void nodes.
机译:水下无线传感器网络(WSN)中的声学通信由于其独特的属性而受到限制,这些属性包括通信信道高延迟,多路径衰落以及由于动态噪声特性而导致信号的指数下降。由于效率低下,能量消耗不平衡,转发器节点选择不当会导致严重的死亡,从而导致为相邻节点创建空洞。在大多数情况下,通过始终选择同一节点,转发器节点会受到过度惩罚。提出了一种增强的自适应机制,通过自适应地降低节点的优先级以及剩余能量来应对转发节点的惩罚。所提出的路由协议基于基于机会避免的地理机会路由范例,并由移动宿协助。通过将整个网络字段划分为多个多维数据集,可以形成更具体和统一的路由决策。根据数据包传递概率,在相邻多维数据集的地理位置上选择转发器节点。还提出了无效节点恢复机制,并通过部署移动接收器直接从无效节点收集数据来对其进行评估。进行了广泛的仿真,以评估拟议的工作。仿真证明,所提出的工作显着增加了数据包的传递并减少了无效节点的比例。

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