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An Energy Efficiency Multi-Level Transmission Strategy based on underwater multimodal communication in UWSNs

机译:基于UWSNS水下多峰通信的能效多级传输策略

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This paper discusses the data transmission strategy based on underwater multimodal communication for marine applications in underwater wireless sensor networks (UWSNs). Underwater data required by various applications have different values of information (VoIs) depending on the type and timeliness of events. These data should be transmitted in different time latency according to their VoIs to accommodate the both application requirements and network performance. Our objective is to design a multi-level transmission strategy by using underwater multimodal communication system so that multiple paths with different transmission latency and energy consumption are provided for underwater data in UWSNs. For this purpose, we first define a minimum cost flow (MCF) model for the design of transmission strategy that considers transmission latency, energy efficiency, and transfer load. Then a distributed multilevel transmission strategy EMTS is proposed based on time backoff method for large-scale UWSNs. Finally, we compared the transmission latency, energy efficiency and network lifetime obtained by our EMTS strategy to those of the optimum solution of the MCF model, and a transmission algorithm based on greedy strategy. Although the latency of EMTS is slightly higher than that of other algorithms, our average network lifetime can reach 88.7% of that of the optimum solution of the MCF model.
机译:本文讨论了基于水下多峰通信的水下无线传感器网络(UWSNS)的海洋应用的数据传输策略。根据事件的类型和及时性,各种应用所需的水下数据具有不同的信息值(VoIS)。这些数据应根据其VOIS在不同的时间延迟中传输,以适应应用要求和网络性能。我们的目的是通过使用水下多峰通信系统来设计多级传输策略,使得在UWSN中的水下数据提供了具有不同传输延迟和能量消耗的多个路径。为此目的,我们首先定义最小成本流量(MCF)模型,用于设计传输策略,其考虑传输延迟,能效和传输负载。然后基于用于大型UWSN的时间退避方法,提出了一种分布式多级传输策略EMT。最后,我们将我们的EMTS策略获得的传输延迟,能效和网络寿命与MCF模型的最佳解决方案进行了比较,以及基于贪婪策略的传输算法。虽然EMT的延迟略高于其他算法,但我们的平均网络寿命可以达到MCF模型的最佳解的88.7%。

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