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DAMAC: A Delay-Aware MAC Protocol for Ad Hoc Underwater Acoustic Sensor Networks

机译:DAMAC:Ad Hoc水下声学传感器网络的延迟感知MAC协议

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摘要

In a channel shared by several nodes, the scheduling algorithm is a key factor to avoiding collisions in the random access-based approach. Commonly, scheduling algorithms can be used to enhance network performance to meet certain requirements. Therefore, in this paper we propose a Delay-Aware Media Access Control (DAMAC) protocol for monitoring time-sensitive applications over multi-hop in Underwater Acoustic Sensor Networks (UASNs), which relies on the random access-based approach where each node uses Carrier Sense Multiple Access/Collision Avoidance (CSMA/CA) to determine channel status, switches nodes on and off to conserve energy, and allows concurrent transmissions to improve the underwater communication in the UASNs. In addition, DAMAC does not require any handshaking packets prior to data transmission, which helps to improve network performance in several metrics. The proposed protocol considers the long propagation delay to allow concurrent transmissions, meaning nodes are scheduled to transmit their data packets concurrently to exploit the long propagation delay between underwater nodes. The simulation results show that DAMAC protocol outperforms Aloha, BroadcastMAC, RMAC, Tu-MAC, and OPMAC protocols under varying network loads in terms of energy efficiency, communication overhead, and fairness of the network by up to 65%, 45%, and 726%, respectively.
机译:在由几个节点共享的频道中,调度算法是避免基于随机访问的方法中的冲突的关键因素。通常,调度算法可用于增强网络性能以满足某些要求。因此,在本文中,我们提出了一种延迟感知的媒体访问控制(DAMAC)协议,用于监视水下声学传感器网络(UASN)中的多跳时的时敏应用程序,这依赖于每个节点使用的随机访问的方法载波侦听多个访问/碰撞避免(CSMA / CA)以确定通道状态,打开和关闭节点以节省能量,并允许并发传输来改善UASN中的水下通信。此外,DAMAC在数据传输之前不需要任何握手数据包,这有助于提高几个度量中的网络性能。所提出的协议考虑了长传播延迟以允许并发传输,含义节点被调度同时传输其数据包以利用水下节点之间的长传播延迟。仿真结果表明,在能量效率,通信开销和网络公平高达65%,45%和726的情况下,DAMAC协议在不同的网络负载下占ALOHA,广播公司,RMAC,TU-MAC和OPMAC协议,高达65%,45%和726 %, 分别。

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