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Ranging Consistency Based on Ranging-Compensated Temperature-Sensing Sensor for Inter-Satellite Link of Navigation Constellation

机译:基于测距补偿温度传感传感器的导航星座卫星间测距一致性

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摘要

Global Navigation Satellite System performance can be significantly enhanced by introducing inter-satellite links (ISLs) in navigation constellation. The improvement in position, velocity, and time accuracy as well as the realization of autonomous functions requires ISL distance measurement data as the original input. To build a high-performance ISL, the ranging consistency among navigation satellites is an urgent problem to be solved. In this study, we focus on the variation in the ranging delay caused by the sensitivity of the ISL payload equipment to the ambient temperature in space and propose a simple and low-power temperature-sensing ranging compensation sensor suitable for onboard equipment. The experimental results show that, after the temperature-sensing ranging compensation of the ISL payload equipment, the ranging consistency becomes less than 0.2 ns when the temperature change is 90 °C.
机译:通过在导航星座中引入卫星间链接(ISL),可以显着提高全球导航卫星系统的性能。位置,速度和时间精度的提高以及自主功能的实现需要将ISL距离测量数据作为原始输入。为了构建高性能的ISL,导航卫星之间的测距一致性是一个亟待解决的问题。在这项研究中,我们重点关注由ISL有效载荷设备对空间环境温度的敏感性引起的测距延迟变化,并提出一种适用于机载设备的简单,低功耗的温度感应测距补偿传感器。实验结果表明,在对ISL有效载荷设备进行温度感应测距补偿后,当温度变化为90°C时,测距一致性小于0.2 ns。

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