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Measurement-based simulation of underwater optical networks

机译:基于测量的水下光网络模拟

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The increasing interest in the application of optical communications to underwater communications and networks calls for reliable simulation models, that allow a system designer to realistically assess the performance of optical systems before actual deployment in water. In this paper, we present an optical channel model that is based on samples of the total attenuation coefficient and of the solar light irradiance taken during the NATO STO CMRE ALOMEX'15 scientific cruise, in different water conditions. The data set includes both strong and mild solar illumination conditions, as well as a number of different settings for the light absorption and scattering coefficients. We implement the model as part of the DESERT Underwater network simulator, and employ it to show that the throughput of underwater optical links depends not only on the distance between the transmitter and the receiver, but also on the depth at which the devices are deployed. The corresponding insight is empirically validated in dry tests and lake experiments using a proof-of-concept optical modem, and helped drive the next stage of the modem development.
机译:对将光通信应用于水下通信和网络的兴趣日益浓厚,因此需要可靠的仿真模型,该模型可使系统设计人员在实际部署到水中之前切实评估光学系统的性能。在本文中,我们提出了一个光通道模型,该模型基于总衰减系数和北约STO CMRE ALOMEX'15科学航行期间在不同水质条件下获得的太阳光辐照度的样本。该数据集既包括强光照条件也包括温和的太阳光照条件,以及光吸收和散射系数的许多不同设置。我们将该模型作为DESERT水下网络模拟器的一部分来实现,并用它来表明水下光链路的吞吐量不仅取决于发射器和接收器之间的距离,还取决于设备的部署深度。相应的见解在概念验证光学调制解调器的干燥测试和湖泊实验中得到了经验验证,并有助于推动调制解调器发展的下一阶段。

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