测绘通报 ›› 2016, Vol. 0 ›› Issue (1): 19-22.doi: 10.13474/j.cnki.11-2246.2016.0005.
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HUANG Kunxue1, CHANG Xiaotao2, SUN Yu3
Received:
2014-11-25
Revised:
2015-10-16
Online:
2016-01-25
Published:
2016-02-01
CLC Number:
HUANG Kunxue, CHANG Xiaotao, SUN Yu. Using Lunar Prospector Doppler Data to Recover and Analyze Lunar Gravity Field[J]. 测绘通报, 2016, 0(1): 19-22.
[1] BINDER A B. Lunar Prospector: Overview [J]. Science, 1998, 281(5382): 1475-1476. [2] KONOPLIV A S, BANERDT W B, SJOGREN W L. Venus Gravity: 180th Degree and Order Model [J]. Icarus, 1999, 139(1): 3-18. [3] KONOPLIV A S, ASMAR S W, CARRANZA E, et al. Recent Gravity Models as a Result of the Lunar Prospector Mission [J]. Icarus, 2001, 150(1): 1-18. [4] GOOSSENS S, MATSUMOTO K. Lunar Satellite Orbit Determination Analysis and Quality Assessment from Lunar Prospector Tracking Data and Selene Simulations [J]. Advances in Space Research, 2007, 40(1): 43-50. [5] 丰海,李建成,李大炜,等.月球Airy均衡状态与月壳厚度估计[J]. 测绘学报,2012,41 (4): 543-548. [6] PING J S, HUANG Q, YAN J G, et al. Lunar Topographic Model Cltm-s01 from Chang'e-1 Laser ALtimeter [J]. Science in China Series G: Physics Mechanics and Astronomy, 2009, 52(7): 1105-1114. [7] 罗志才,李琼,钟波. 利用GRACE时变重力场反演黑河流域水储量变化[J]. 测绘学报,2012,41 (5): 676-681. [8] GUO J Y, SUN Y, CHANG X T,et al. Lunar Deflections of the Vertical and Their Distribution [J]. Natural Science, 2011, 3(5): 339-343. [9] ARAKI H, TAZAWA S, NODA H, et al. Lunar Global Shape and Polar Topography Derived from Kaguya-LALT Laser Altimetry [J]. Science, 2009, 323(5916): 897-900. [10] 李森,安智明. 克里金模型在区域重力数据插值中的应用[J]. 测绘通报, 2013 (10): 63-66. [11] MAZARICO E, LEMOINE F, HAN S C et al. GLGM-3: A Degree-150 Lunar Gravity Model from the Historical Tracking Data of NASA Moon Orbiters [J]. Journal of Geophysical Research, 2010(115): E05001. [12] FOLKNER W M, WILLIAMS J G, BOGGS D H. The Planetary and Lunar Ephemeris de 421 [J]. IPN Progress Report, 2008:172-178. [13] 曹金国,王建斌,戴山岭. 重力场扰动位泰勒展开式低阶项应用研究[J].测绘通报,2014(1):54-55. [14] GOOSSENS S, MATSUMOTO K. Lunar Satellite Orbit Determination Analysis and Quality Assessment from Lunar Prospector Tracking Data and Selene Simulations [J]. Advances in Space Research, 2007, 40(1): 43-50. |
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