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Impact of random pointing and tracking errors on the design of coherent and incoherent optical intersatellite communication links

机译:随机指向和跟踪误差对相干和非相干卫星间光通信链路设计的影响

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摘要

Given the RMS transmitter pointing error and the desired probability of bit error (PBE), it can be shown that an optimal transmitter antenna gain exists which minimizes the required transmitter power. Given the RMS local oscillator tracking error, an optimum receiver antenna gain can be found which optimizes the receiver performance. The impact of pointing and tracking errors on the design of direct-detection pulse-position modulation (PPM) and heterodyne noncoherent frequency-shift keying (NCFSK) systems is then analyzed in terms of constraints on the antenna size and the power penalty incurred. It is shown that in the limit of large spatial tracking errors, the advantage in receiver sensitivity for the heterodyne system is quickly offset by the smaller antenna gain and the higher power penalty due to tracking errors. In contrast, for systems with small spatial tracking errors, the heterodyne system is superior because of the higher receiver sensitivity.
机译:给定RMS发射机指向误差和所需的误码概率(PBE),可以证明存在最佳的发射机天线增益,该增益使所需的发射机功率最小。给定RMS本地振荡器跟踪误差,可以找到优化接收器性能的最佳接收器天线增益。针对天线尺寸和产生的功率损失,分析了指向和跟踪误差对直接检测脉冲位置调制(PPM)和外差非相干频移键控(NCFSK)系统设计的影响。结果表明,在较大的空间跟踪误差的限制下,外差系统在接收机灵敏度方面的优势很快被较小的天线增益和由于跟踪误差引起的更高的功率损失所抵消。相反,对于空间跟踪误差较小的系统,由于接收器灵敏度较高,因此外差系统更为优越。

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