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首頁 > 論文 > 光學學報 > 39卷 > 3期(pp:314002--1)

4 kHz重復頻率衛星激光測距系統及其應用

4 kHz Repetition Rate Satellite Laser Ranging System and Its Application

  • 摘要
  • 論文信息
  • 參考文獻
  • 被引情況
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摘要

分析了上海天文臺皮秒激光器系統在不同重復頻率下的輸出功率、輸出波形等性能,實現了重復頻率為4 kHz、功率為3 W、波長為532 nm的激光穩定輸出。建立了4 kHz重復頻率衛星激光測距系統,實現了4 kHz重復頻率衛星測距,其測量數據量和標準點數據精度比1 kHz重復頻率的分別提高了約2.62倍和1.62倍,提升了衛星觀測性能。采用Lomb算法獲得了Ajisai衛星自轉頻率(平均值為0.4234 Hz)以及自轉頻率準確度(0.0054 Hz),與1 kHz激光觀測系統相比,4 kHz重復頻率衛星激光測距系統的衛星自轉測定精度顯著提升。

Abstract

The picosecond-laser system at Shanghai Astronomical Observatory is analyzed and its performances, such as output powers and output waveforms, under different repetition rates are investigated. A stable laser output with repetition rate of 4 kHz, power of 3 W, and wavelength of 532 nm is realized. The 4 kHz repetition rate ranging system is established and the 4 kHz repetition rate satellite laser ranging is achieved. Compared with those for 1 kHz repetition rate, the amount of observation data and the precision of normal point data are increased by approximate 2.62 times and 1.62 times, respectively, which indicating the performance of satellite observation is improved. Moreover, the average spin rate of Ajisai satellite obtained by the Lomb algorithm is 0.4234 Hz with an accuracy of 0.0054 Hz, higher than those from the 1 kHz laser observation, and the measurement accuracy of satellite spin is also improved.

Newport宣傳-MKS新實驗室計劃
補充資料

中圖分類號:P228.5

DOI:10.3788/aos201939.0314002

所屬欄目:激光器與激光光學

基金項目:國家自然科學基金(11503068,U1631240)、博士后創新人才計劃(BX201700270)、博士后第62批面上基金(2017M621562)

收稿日期:2018-09-13

修改稿日期:2018-09-28

網絡出版日期:2018-10-18

作者單位    點擊查看

鄧華榮:中國科學院上海天文臺, 上海 200030
張海峰:中國科學院上海天文臺, 上海 200030中國科學院空間目標與碎片觀測重點實驗室, 江蘇 南京 210008
龍明亮:中國科學院上海天文臺, 上海 200030
吳志波:中國科學院上海天文臺, 上海 200030中國科學院空間目標與碎片觀測重點實驗室, 江蘇 南京 210008
湯凱:中國科學院上海天文臺, 上海 200030
張忠萍:中國科學院上海天文臺, 上海 200030中國科學院空間目標與碎片觀測重點實驗室, 江蘇 南京 210008

聯系人作者:鄧華榮([email protected])

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【4】Kirchner G, Koidl F, Kucharski D, et al. Graz kHz SLR LIDAR: First results[J]. Proceedings of SPIE, 2009, 7355: 73550U.

【5】Zhang Z P, Zhang H F, Wu Z B, et al. kHz repetition Satellite Laser Ranging system with high precision and measuring results[J]. Chinese Science Bulletin, 2011, 56(15): 1177-1183.
張忠萍, 張海峰, 吳志波, 等. 高精度千赫茲重復頻率衛星激光測距系統及實測結果[J]. 科學通報, 2011, 56(15): 1177-1183.

【6】Wu Z B, Zhang H F, Deng H R, et al. Report on satellite laser ranging observations at Shanghai Observatory in 2014[J]. Annals of Shanghai Astronomical Observatory, Chinese Academy of Sciences, 2015(1): 64-71.
吳志波, 張海峰, 鄧華榮, 等. 2014年上海天文臺衛星激光測距觀測報告[J]. 中國科學院上海天文臺年刊, 2015(1): 64-71.

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湯儒峰, 李語強, 李熙, 等. 基于高重頻衛星激光測距測算AJISAI衛星自轉速率[J]. 中國激光, 2015, 42(6): 0608010.

【9】Xu B, Yang T, Tan B H, et al. The simulate study of signal detection based on lomb-scargle algorithm[J]. Nuclear Electronics & Detection Technology, 2011, 31(6): 702-705.
徐斌, 楊濤, 譚保華, 等. 基于Lomb-Scargle算法的周期信號探測的模擬研究[J]. 核電子學與探測技術, 2011, 31(6): 702-705.

引用該論文

Deng Huarong,Zhang Haifeng,Long Mingliang,Wu Zhibo,Tang Kai,Zhang Zhongping. 4 kHz Repetition Rate Satellite Laser Ranging System and Its Application[J]. Acta Optica Sinica, 2019, 39(3): 0314002

鄧華榮,張海峰,龍明亮,吳志波,湯凱,張忠萍. 4 kHz重復頻率衛星激光測距系統及其應用[J]. 光學學報, 2019, 39(3): 0314002

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