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EDOVE: Energy and Depth Variance-Based Opportunistic Void Avoidance Scheme for Underwater Acoustic Sensor Networks

机译:EDOVE:用于水下声传感器网络的基于能量和深度方差的机会性空洞避免方案

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摘要

Underwater Acoustic Sensor Network (UASN) comes with intrinsic constraints because it is deployed in the aquatic environment and uses the acoustic signals to communicate. The examples of those constraints are long propagation delay, very limited bandwidth, high energy cost for transmission, very high signal attenuation, costly deployment and battery replacement, and so forth. Therefore, the routing schemes for UASN must take into account those characteristics to achieve energy fairness, avoid energy holes, and improve the network lifetime. The depth based forwarding schemes in literature use node’s depth information to forward data towards the sink. They minimize the data packet duplication by employing the holding time strategy. However, to avoid void holes in the network, they use two hop node proximity information. In this paper, we propose the Energy and Depth variance-based Opportunistic Void avoidance (EDOVE) scheme to gain energy balancing and void avoidance in the network. EDOVE considers not only the depth parameter, but also the normalized residual energy of the one-hop nodes and the normalized depth variance of the second hop neighbors. Hence, it avoids the void regions as well as balances the network energy and increases the network lifetime. The simulation results show that the EDOVE gains more than 15% packet delivery ratio, propagates 50% less copies of data packet, consumes less energy, and has more lifetime than the state of the art forwarding schemes.
机译:水下声传感器网络(UASN)具有固有的局限性,因为它部署在水环境中并使用声信号进行通信。这些约束的示例包括长的传播延迟,非常有限的带宽,传输所需的高能源成本,非常高的信号衰减,昂贵的部署和电池更换等。因此,UASN的路由方案必须考虑这些特性,以实现能量公平,避免能量空洞并提高网络寿命。文献中基于深度的转发方案使用节点的深度信息将数据转发到接收器。通过采用保持时间策略,它们可以最大程度地减少数据包重复。但是,为了避免网络中出现空洞,它们使用两个跃点节点邻近信息。在本文中,我们提出了基于能量和深度方差的机会性空洞避免(EDOVE)方案,以实现网络中的能量平衡和空洞避免。 EDOVE不仅考虑深度参数,还考虑一跳节点的归一化残余能量和第二跳邻居的归一化深度方差。因此,它避免了空隙区域并平衡了网络能量并增加了网络寿命。仿真结果表明,EDOVE与现有转发方案相比,获得了超过15%的数据包传输率,传播的数据包副本减少了50%,消耗的能量更少,寿命更长。

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