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Impact of pointing errors on performance of an intersatellite microwave photonics link with an optical preamplifier under dual-tone modulation

机译:指向误差对双音调制下与光学前置放大器的星际微波光子学链路性能的影响

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摘要

The intersatellite microwave photonics link with an optical preamplifier is affected by third-order inter-modulation distortion under dual-tone modulation and pointing errors due to beam wander, which would greatly degrade the link performance. An exact analytical expression for signal-to-noise and distortion ratio (SNDR) is derived considering the signal fade caused by the pointing errors of transceiver. It is shown that, given the desired SNDR and the rms random pointing jitter, an optimum modulation index of Mach-Zehnder modulator exists that minimizes laser output power. Moreover, an optimized model for laser output power and modulation index is established. The effects of the optical preamplifier gain and noise figure on the optimum link performance are also examined. Numerical results show that the minimum laser output power required to achieve the desired SNDR is more sensitive to the preamplifier noise figure. For an SNDR of 20 dB, doubling the preamplifier noise figure results in an 8.95 dB increase in minimum laser output power at the rms pointing jitter of 0.5 μrad.
机译:带有光学前置放大器的星际微波光子学链路受双音调调制下的三阶互调失真和由于光束漂移引起的指向误差的影响,这将大大降低链路性能。考虑到收发器指向误差引起的信号衰减,可以得出信噪比和失真比(SNDR)的精确解析表达式。结果表明,给定所需的SNDR和rms随机指向抖动,存在使激光输出功率最小的Mach-Zehnder调制器的最佳调制指数。此外,建立了激光输出功率和调制指数的优化模型。还检查了光学前置放大器增益和噪声系数对最佳链路性能的影响。数值结果表明,达到所需SNDR所需的最小激光输出功率对前置放大器的噪声系数更为敏感。对于20 dB的SNDR,将前置放大器的噪声系数加倍会使RMS指向抖动为0.5μrad的最小激光输出功率增加8.95 dB。

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