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HAP-based FSO system using all-optical detect-amplify-and-forward relaying and coherent detection receiver

机译:基于HAP的FSO系统,使用全光检测放大转发中继和相干检测接收机

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摘要

In this paper, we propose a high-altitude platform (HAP)-based free space optical communication (FSO) system using all-optical relaying to connect two ground stations (GSs) via a HAP. Optical detect-amplify-and-forward is carried out at the HAP thanks to the use of an optical hard-limiter and an optical amplifier. In addition, coherent detection is applied at the GS's receiver to improved the receiver sensitivity. The closed-form expression for the bit error rate (BER) of the proposed FSO system is deduced assuming that the atmospheric channel is modeled as Gamma-Gamma distribution. The achievable BER with low values has proved the feasibility of our proposed system. In addition, the advantage of using coherent detection compared to the direct detection is demonstrated in term of power gain. Other useful information for system design regarding the required transmitted power, the local oscillator power, and the optimum threshold power is also provided in this paper.
机译:在本文中,我们提出了一种基于高空平台(HAP)的自由空间光通信(FSO)系统,该系统使用全光中继通过HAP连接两个地面站(GS)。由于使用了光学硬限幅器和光学放大器,因此可以在HAP上进行光学检测,放大和转发。此外,在GS的接收器处采用了相干检测,以提高接收器的灵敏度。假定大气信道被建模为Gamma-Gamma分布,则推导所提出的FSO系统的误码率(BER)的闭式表达式。低值可实现的BER证明了我们提出的系统的可行性。此外,与直接检测相比,使用相干检测的优势在功率增益方面得到了证明。本文还提供了有关系统设计的其他有用信息,包括所需的发射功率,本地振荡器功率和最佳阈值功率。

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