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A Novel Energy-Efficient Contention-Based MAC Protocol Used for OA-UWSN

机译:一种用于OA-UWSN的新型基于节能竞争的MAC协议

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摘要

A hybrid optical-acoustic underwater wireless sensor network (OA-UWSN) was proposed to solve the problem of high-speed transmission of real-time video and images in marine information detection. This paper proposes a novel energy-efficient contention-based media access control (MAC) protocol (OA-CMAC) for the OA-UWSN. Based on optical-acoustic fusion technology, our proposed OA-CMAC combines the postponed access mechanism in carrier sense multiple access with collision avoidance (CSMA/CA) and multiplexing-based spatial division multiple access (SDMA) technology to achieve high-speed and real-time data transmission. The protocol first performs an acoustic handshake to obtain the location information of a transceiver node, ensuring that the channel is idle. Otherwise, it performs postponed access and waits for the next time slot to contend for the channel again. Then, an optical handshake is performed to detect whether the channel condition satisfies the optical transmission, and beam alignment is performed at the same time. Finally, the nodes transmit data using optical communication. If the channel conditions do not meet the requirements for optical communication, a small amount of data with high priority is transmitted through acoustic communication. An evaluation of the proposed MAC protocol was performed with OMNeT++ simulations. The results showed that when the optical handshaking success ratio was greater than 50%, compared to the O-A handshake protocol in the literature, our protocol could result in doubled throughput. Due to the low energy consumption of optical communication, the node’s lifetime is 30% longer than that of pure acoustic communication, greatly reducing the network operation cost. Therefore, it is suitable for large-scale underwater sensor networks with high loads.
机译:为了解决海洋信息检测中实时视频和图像的高速传输问题,提出了一种混合光声水下无线传感器网络(OA-UWSN)。本文针对OA-UWSN提出了一种新的基于节能竞争的媒体访问控制(MAC)协议(OA-CMAC)。我们提出的OA-CMAC基于光声融合技术,将载波侦听多路访问中的延迟访问机制与避免冲突(CSMA / CA)和基于复用的空分多路访问(SDMA)技术相结合,以实现高速,实时时间数据传输。该协议首先执行声音握手,以获取收发器节点的位置信息,从而确保信道空闲。否则,它将执行延迟的访问,并等待下一个时隙再次竞争该信道。然后,执行光学握手以检测信道条件是否满足光学传输,并且同时执行光束对准。最后,节点使用光通信传输数据。如果信道条件不满足光通信的要求,则通过声通信发送少量高优先级的数据。使用OMNeT ++仿真对提出的MAC协议进行了评估。结果表明,当光学握手成功率大于50%时,与文献中的O-A握手协议相比,我们的协议可以使吞吐量增加一倍。由于光通信的能耗低,该节点的寿命比纯声通信的寿命长30%,从而大大降低了网络运营成本。因此,它适用于高负载的大型水下传感器网络。

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