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Underwater Wireless Sensor Communications in the 2.4 GHz ISM Frequency Band

机译:2.4 GHz ISM频段中的水下无线传感器通信

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摘要

One of the main problems in underwater communications is the low data rate available due to the use of low frequencies. Moreover, there are many problems inherent to the medium such as reflections, refraction, energy dispersion, etc., that greatly degrade communication between devices. In some cases, wireless sensors must be placed quite close to each other in order to take more accurate measurements from the water while having high communication bandwidth. In these cases, while most researchers focus their efforts on increasing the data rate for low frequencies, we propose the use of the 2.4 GHz ISM frequency band in these special cases. In this paper, we show our wireless sensor node deployment and its performance obtained from a real scenario and measures taken for different frequencies, modulations and data transfer rates. The performed tests show the maximum distance between sensors, the number of lost packets and the average round trip time. Based on our measurements, we provide some experimental models of underwater communication in fresh water using EM waves in the 2.4 GHz ISM frequency band. Finally, we compare our communication system proposal with the existing systems. Although our proposal provides short communication distances, it provides high data transfer rates. It can be used for precision monitoring in applications such as contaminated ecosystems or for device communicate at high depth.
机译:水下通信中的主要问题之一是由于使用低频而导致的低数据速率。而且,介质固有的许多问题,例如反射,折射,能量分散等,都极大地降低了设备之间的通信。在某些情况下,无线传感器必须放置得非常靠近,以便在具有高通信带宽的情况下从水中进行更精确的测量。在这些情况下,尽管大多数研究人员将精力集中在提高低频数据速率上,但我们建议在这些特殊情况下使用2.4 GHz ISM频段。在本文中,我们展示了我们的无线传感器节点部署以及从实际场景中获得的性能以及针对不同频率,调制和数据传输速率所采取的措施。所执行的测试显示传感器之间的最大距离,丢失的数据包数量和平均往返时间。根据我们的测量,我们提供了一些使用2.4 GHz ISM频带中的EM波在淡水中进行水下通信的实验模型。最后,我们将通信系统建议与现有系统进行比较。尽管我们的建议提供了较短的通信距离,但它提供了很高的数据传输速率。它可以用于受污染的生态系统等应用中的精确监控,也可以用于深度通信。

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