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Overlay Networking to ensure seamless communication in Underwater Wireless Sensor Networks

机译:覆盖网络以确保水下无线传感器网络中的无缝通信

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Underwater Wireless Sensor Networks (UWSNs) finds its way actively in current researches where End-to-End communication is primarily focus with the notion of various expansion perspectives. Upgrading of machinery, equipments and sensors are involving for information and communication technologies. In general, data transmission from source to destination in underwater is asymmetric, i.e. transmitter and receiver section serves on distinct frequencies thereby complementing underwater communication. On the other hand, routing in UWSNs seems to be challenging this necessitates further exploration to complement underwater wireless communication in periodic manner. The research progressively needs to overcome certain limitations with Delay Tolerant Network (DTN) enabled JANUS (DTN-J) is an effective technique to ensure reliable data transmission which is crucial for underwater networks. A high efficiency microprocessor is widely been adopted in terms of decision making mechanism which complements for maximizing system performance. In this research, simulation results enhance the End-to-End communication and network lifetime together suggesting reliable tensor value which further assists to potential development in the field of UWSNs.
机译:在当前的研究中,水下无线传感器网络(UWSN)积极地找到了自己的方法,在这些研究中,端到端通信主要集中在各种扩展角度的概念上。机械,设备和传感器的升级涉及信息和通信技术。通常,在水下从源到目的地的数据传输是不对称的,即,发送器和接收器部分以不同的频率工作,从而补充了水下通信。另一方面,UWSN中的路由似乎具有挑战性,因此有必要进行进一步的探索以定期补充水下无线通信。这项研究逐渐需要克服某些问题,而启用延迟耐受网络(DTN)的JANUS(DTN-J)是一种有效的技术,可确保对水下网络至关重要的可靠数据传输。在决策机制方面,高效微处理器被广泛采用,这种决策机制可以使系统性能最大化。在这项研究中,仿真结果共同提高了端到端通信和网络寿命,表明可靠的张量值,进一步有助于UWSNs领域的潜在发展。

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