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Optical wireless link budget calculations for real time swimmers feedback

机译:实时游泳者反馈的光无线链路预算计算

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This paper presents simulation results for an underwater optical wireless communication system based on light emitting diode (LED) and integrated detector preamplifier (IDP). Both the position and the orientation of the transmitter and the receiver change during the swimmer's actions. The simulation results showed the line of sight (LOS) communication link and the non line of sight (NLOS). The effect of air bubbles in water which was studied by the authors previously was included in the simulation as a swimmer generates a huge amount of bubbles during swimming. The received power and the link margins for two different LEDs were calculated to check the availability of the system. It was proven that the half power beam width (HPBW) and the bubbles are important factors in the link budget calculations and this is important for the link availability. The simulation results for the optical wireless system using a superflux LED and OPT101 receiver achieved more than 1 m communication link underwater with and without the effect of air bubbles.
机译:本文介绍了基于发光二极管(LED)和集成探测器前置放大器(IDP)的水下光学无线通信系统的仿真结果。发射器和接收器的位置和方向在游泳者的动作过程中都会改变。仿真结果显示了视线(LOS)通信链路和非视线(NLOS)。作者先前研究过的水中气泡的影响被包括在模拟中,因为游泳者在游泳过程中会产生大量气泡。计算了两个不同LED的接收功率和链路裕量,以检查系统的可用性。事实证明,半功率波束宽度(HPBW)和气泡是链路预算计算中的重要因素,这对于链路可用性很重要。使用Superflux LED和OPT101接收器的光学无线系统的仿真结果实现了水下1 m以上的通信链路(有无气泡影响)。

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