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A laboratory system for the investigation of rain fade compensation techniques for Ka-band satellites

机译:用于研究Ka波段卫星的雨衰补偿技术的实验室系统

摘要

The design and performance of a rain fade simulation/counteraction system on a laboratory simulated 30/20 GHz, time division multiple access (TDMA) satellite communications testbed is evaluated. Severe rain attenuation of electromagnetic radiation at 30/20 GHz occurs due to the carrier wavelength approaching the water droplet size. Rain in the downlink path lowers the signal power present at the receiver, resulting in a higher number of bit errors induced in the digital ground terminal. The laboratory simulation performed at NASA Lewis Research Center uses a programmable PIN diode attenuator to simulate 20 GHz satellite downlink geographic rain fade profiles. A computer based network control system monitors the downlink power and informs the network of any power threshold violations, which then prompts the network to issue commands that temporarily increase the gain of the satellite based traveling wave tube (TWT) amplifier. After the rain subsides, the network returns the TWT to the normal energy conserving power mode. Bit error rate (BER) data taken at the receiving ground terminal serves as a measure of the severity of rain degradation, and also evaluates the extent to which the network can improve the faded channel.
机译:在实验室模拟的30/20 GHz时分多址(TDMA)卫星通信测试台上,评估了雨衰模拟/对抗系统的设计和性能。由于载波波长接近水滴大小,在30/20 GHz频率下电磁辐射的雨水严重衰减。下行链路路径中的雨水会降低接收器处的信号功率,从而导致在数字地面终端中引发大量误码。在NASA Lewis研究中心进行的实验室仿真使用可编程PIN二极管衰减器来仿真20 GHz卫星下行链路地理降雨衰落曲线。基于计算机的网络控制系统监视下行链路功率,并将任何违反功率阈值的情况通知网络,然后提示网络发出命令,这些命令会暂时增加基于卫星的行波管(TWT)放大器的增益。雨消退后,网络将TWT返回到正常的节能功率模式。在接收地面终端获取的误码率(BER)数据可用来衡量降雨恶化的严重程度,并且还可以评估网络可以改善衰落信道的程度。

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