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A Satellite On-Board Processing Scheme Based on Photon Frequency Conversion

机译:基于光子频率转换的卫星车载加工方案

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A novel satellite on-board processing scheme based on photon frequency conversion is proposed for the purpose of realizing frequency conversion. For the received intermediate frequency signal, a Mach-Zehnder modulator is used to convert it into an optical signal. The modulated optical signal and an optical signal generated by a tunable laser enter the photodiode through a coupler to perform heterodyne beat frequency and generate an intermediate frequency signal of the target carrier frequency, thereby reducing the cost and power consumption of on-board processing. Simulation results show the spectrograms and constellation diagrams of frequency conversion from Q-band to V-band in 8PSK modulation format. The bit error rate(BER) obtained by simulation shows that in a satellite communication system, when the OSNR is higher than 5dB, the BER performance can meet the 2×10~(-2) threshold when using 8PSK modulation format, which indicates that error-free transmission can be achieved when using 20% soft-decision FEC. The Q factor obtained by simulation shows that when the OSNR is higher than 5dB, the Q factor can reach more than 6.5 when using QPSK modulation format, which indicates that reliable transmission can be achieved. Compared with existing solutions, this scheme has the advantages of lower cost, lower power consumption and more flexible frequency selection, it can also solve the inflexibility and improve the performance of radio frequency conversion in traditional scheme.
机译:提出了一种基于光子频率转换的新型卫星在板上处理方案,用于实现频率转换。对于接收的中频信号,Mach-Zehnder调制器用于将其转换为光信号。调制光信号和由可调谐激光器产生的光信号通过耦合器进入光电二极管以执行外差拍频率并产生目标载波频率的中频信号,从而降低了板载处理的成本和功耗。仿真结果显示了在8PSK调制格式中从Q波段到V波段的频率转换的谱图和星座图。通过仿真获得的误码率(BER)显示,在卫星通信系统中,当OSNR高于5dB时,使用8PSK调制格式时,BER性能可以满足2×10〜(-2)阈值,这表明了这一点使用20%软判决FEC时,可以实现无差错传输。通过仿真获得的Q因子表明,当OSNR高于5DB时,使用QPSK调制格式时,Q因子可以达到6.5以上,这表明可以实现可靠的传输。与现有解决方案相比,该方案具有较低成本,较低功耗和更灵活的频率选择的优点,它还可以解决传统方案中射频转换的不灵活性和提高性能。

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