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In-orbit measurements of spacecraft microvibrations for satellite laser communication links

机译:用于卫星激光通信链路的航天器微振动的在轨测量

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摘要

Angular microvibrations of platform jitter on the optical inter-orbit communications engineering test satellite are measured in space during ground-to-satellite laser communication links. The microaccelerations are measured by the onboard accelerometers at a sampling rate of 2048 Hz. The angular microvibrations are estimated from the measured microaccelerations using the tracking characteristics of the laser communications terminal and the conversion factor on the basis of microvibration data obtained from ground-based tests. The power spectral density (PSD) of the satellite microvibrations is analyzed by using the fast Fourier transform analysis and the data length is examined according to the frequency resolution of the PSD. The in-orbit measurements of the PSDs are compared with those obtained from the ground test. The angular microvibrational base motion is estimated and a PSD up to 1024 Hz is additionally provided as a database of the real measurement results with previously obtained in-orbit measurements. The measured results will contribute to the angular jitter estimation and the design of a tracking control loop for space laser communication systems in the future.
机译:在地面到卫星激光通信链路中,在空间中测量了光学轨道间通信工程测试卫星上平台抖动的角微振动。微加速度是由板载加速度计以2048 Hz的采样率测量的。根据从地面测试获得的微振动数据,使用激光通信终端的跟踪特性和转换系数,从测得的微加速度估算出角微振动。通过使用快速傅里叶变换分析来分析卫星微振动的功率谱密度(PSD),并根据PSD的频率分辨率检查数据长度。将PSD的在轨测量值与从地面测试获得的值进行比较。估计角微振动基本运动,并额外提供高达1024 Hz的PSD作为实际测量结果的数据库,并带有先前获得的在轨测量结果。未来的测量结果将有助于角抖动估计和空间激光通信系统跟踪控制环路的设计。

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