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Deep space optical communications (DSOC) downlink simulation with varying PPM order

机译:深空光通信(DSOC)下行链路仿真,不同的PPM序列

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During the course of a typical deep space mission like the Mars Earth mission, there exist a wide range of operating points, due to the different changes in geometry that consequently cause different link budgets in terms of received signal and noise power. These changes include distance range, Sun-Earth-Probe angle, zenith angle and atmospheric conditions. The different operating points, with different losses (background noise, pointing losses and atmospheric losses), lead to different capacities and data rates over the course of a typical deep space mission. Consequently, different engineering parameters are adjusted and optimized to combat some of these varying losses in order to get acceptable data rates and bit error probabilities. This is a useful reason to analyze and simulate various operating conditions that occur with the varying spatial orbital time periods of the resulting received signal power level, noise power level, capacity, data rates and bit error probabilities. This paper details results of simulations of typical deep space optical communication link operation.
机译:在像火星地球使命等典型的深度空间使命期间,存在广泛的操作点,由于几何形状的变化不同,因此在接收信号和噪声功率方面导致不同的链路预算。这些变化包括距离范围,太阳探针角度,天顶角和大气条件。不同的操作点,具有不同的损失(背景噪声,指向损耗和大气损失),导致典型的深度空间任务过程中的不同能力和数据速率。因此,调整不同的工程参数并优化以解决这些变化的一些损耗,以获得可接受的数据速率和误码概率。这是分析和模拟各种运行条件的有用原因,该操作条件发生了所产生的接收信号功率电平,噪声功率电平,容量,数据速率和误码概率的变化的空间轨道时间段。本文详细说明了典型深空光通信连杆操作的模拟结果。

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