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Tongji‐Grace02s and Tongji‐Grace02k: High‐Precision Static GRACE‐Only Global Earth's Gravity Field Models Derived by Refined Data Processing Strategies

机译:同济乐园02s和同济乐园02K:高精度静态宽限宽度全球地球的重力场模型由精细数据处理策略导出

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Abstract >In order to derive high‐precision static Gravity Recovery and Climate Experiment (GRACE)‐only gravity field solutions, the following strategies were implemented in this study: (1) a refined accelerometer calibration model that treats monthly accelerometer scales as a third‐order polynomial and daily accelerometer biases as a fifth‐order polynomial was developed to calibrate accelerometer measurements; (2) the errors of the acceleration and attitude data were estimated together with the geopotential coefficients and accelerometer parameters on the basis of the weighted least squares adjustments; (3) a nearly complete observation series of GRACE mission was used to decrease the condition number of normal equation; and (4) the GRACE data collected in lower orbit altitude were also included to decrease the condition number. Our results show that (1) the refined accelerometer calibration model with much less parameters performs as well as previous methods (i.e., solving daily scales and hourly biases or estimating biases along with bias rates every 2?hr). However, it provides a system of more stable normal equation and less high‐frequency noise in gravity field solutions; (2) high‐frequency noise in the gravity field solution is reduced by modeling the errors of the acceleration and attitude data; (3) the geopotential coefficients at all degrees is greatly enhanced by using longer GRACE time series (especially the data by the end of 2010); and (4) due to lower orbit altitude, the GRACE data collected since 2014 lead to a significant improvement of the gravity field solution as the satellites are more sensitive to higher‐frequency signal. Using the refined strategies, an unconstrained static solution (named Tongji‐Grace02s) up to degree and order 180 was derived. For further suppressing the high‐frequency noise, a regularization strategy based on the Kaula rule is applied t </span> <span class="z_kbtn z_kbtnclass hoverxs" style="display: none;">展开▼</span> </div> <div class="translation abstracttxt"> <span class="zhankaihshouqi fivelineshidden" id="abstract"> <span>机译:</span><Abstract Type =“Main”XML:Lang =“en”> <标题类型=“main”>抽象</ title> >为了导出高精度静态重力恢复和气候实验(Grace) - only重力现场解决方案,在本研究中实施了以下策略:(1)(1)将每月加速度计秤作为三阶多项式和日常加速度计偏置的精制加速度计校准模型作为第五阶多项式开发,以校准加速度计测量值; (2)基于加权最小二乘调整,估计加速度和态度数据的误差与地球势系数和加速度计参数一起估计; (3)用于降低正常方程的条件数量的几乎完整的观察结果; (4)还包括较低轨道高度收集的恩典数据以减少条件号。我们的结果表明,(1)所提化的加速度计校准模型具有远更少参数的表现和以前的方法(即,解决每2次尺度和每小时偏见或估计偏差,以及每2个小时的偏差率)。然而,它提供了一种更稳定的正常方程式和重力场解决方案中的高频噪声的系统; (2)通过建模加速度和姿态数据的误差来降低重力场解决方案中的高频噪声; (3)通过使用更长的宽限时间序列(特别是2010年底的数据),大大增强了所有程度的地理调位系数; (4)由于轨道较低,自2014年以来收集的恩典数据导致重力场解决方案的显着改进,因为卫星对更高频率信号更敏感。使用精致的策略,衍生出高度和订单180的无约束静态解决方案(名为Connji-Grace02s)。为了进一步抑制高频噪声,应用了基于Kaula规则的正则化策略 </span> <span class="z_kbtn z_kbtnclass hoverxs" style="display: none;">展开▼</span> </div> </div> <div class="record"> <h2 class="all_title" id="enpatent33" >著录项</h2> <ul> <li> <span class="lefttit">来源</span> <div style="width: 86%;vertical-align: text-top;display: inline-block;"> <a href='/journal-foreign-34677/'>《Journal of geophysical research. Solid earth: JGR》</a> <b style="margin: 0 2px;">|</b><span>2018年第7期</span><b style="margin: 0 2px;">|</b><span>共27页</span> </div> </li> <li> <div class="author"> <span class="lefttit">作者</span> <p id="fAuthorthree" class="threelineshidden zhankaihshouqi"> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Chen Qiujie&option=202" target="_blank" rel="nofollow">Chen Qiujie;</a> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Shen Yunzhong&option=202" target="_blank" rel="nofollow">Shen Yunzhong;</a> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Francis Olivier&option=202" target="_blank" rel="nofollow">Francis Olivier;</a> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Chen Wu&option=202" target="_blank" rel="nofollow">Chen Wu;</a> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Zhang Xingfu&option=202" target="_blank" rel="nofollow">Zhang Xingfu;</a> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Hsu Houze&option=202" target="_blank" rel="nofollow">Hsu Houze;</a> </p> <span class="z_kbtnclass z_kbtnclassall hoverxs" id="zkzz" style="display: none;">展开▼</span> </div> </li> <li> <div style="display: flex;"> <span class="lefttit">作者单位</span> <div style="position: relative;margin-left: 3px;max-width: 639px;"> <div class="threelineshidden zhankaihshouqi" id="fOrgthree"> <p>College of Surveying and Geo‐informaticsTongji UniversityShanghai China;</p> <p>College of Surveying and Geo‐informaticsTongji UniversityShanghai China;</p> <p>Faculté des Science de la Technologie et de la CommunicationUniversity of LuxembourgLuxembourg Luxembourg;</p> <p>Department of Land Surveying and Geo‐informaticsThe Hong Kong Polytechnic UniversityHong Kong;</p> <p>Departments of Surveying and MappingGuangdong University of TechnologyGuangzhou China;</p> <p>State Key Laboratory of Geodesy and Earth's Dynamics Institute of Geodesy and GeophysicsCASWuhan China;</p> </div> <span class="z_kbtnclass z_kbtnclassall hoverxs" id="zhdw" style="display: none;">展开▼</span> </div> </div> </li> <li > <span class="lefttit">收录信息</span> <span style="width: 86%;vertical-align: text-top;display: inline-block;"></span> </li> <li> <span class="lefttit">原文格式</span> <span>PDF</span> </li> <li> <span class="lefttit">正文语种</span> <span>eng</span> </li> <li> <span class="lefttit">中图分类</span> <span><a href="https://www.zhangqiaokeyan.com/clc/163.html" title="地球物理学">地球物理学;</a></span> </li> <li class="antistop"> <span class="lefttit">关键词</span> <p style="width: 86%;vertical-align: text-top;"> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=satellite geodesy&option=203" rel="nofollow">satellite geodesy;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=GRACE&option=203" rel="nofollow">GRACE;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=high‐precision static gravity field&option=203" rel="nofollow">high‐precision static gravity field;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=accelerometer data&option=203" rel="nofollow">accelerometer data;</a> </p> <div class="translation"> 机译:卫星测地;恩典;高精度静态重力场;加速度计数据; </div> </li> <li> <span class="lefttit">入库时间</span> <span>2022-08-20 09:24:22</span> </li> </ul> </div> </div> <div class="literature cardcommon"> <div class="similarity "> <h3 class="all_title" id="enpatent66">相似文献</h3> <div class="similaritytab clearfix"> <ul> <li class="active" >外文文献</li> </ul> </div> <div class="similarity_details"> <ul > <li> <div> <b>1. </b><a class="enjiyixqcontent" href="/journal-foreign-detail/0704025591738.html">Tongji‐Grace02s and Tongji‐Grace02k: High‐Precision Static GRACE‐Only Global Earth's Gravity Field Models Derived by Refined Data Processing Strategies</a> <b>[J]</b> . <span> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Chen Qiujie&option=202" target="_blank" rel="nofollow" class="tuijian_auth tuijian_authcolor">Chen Qiujie,</a> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Shen Yunzhong&option=202" target="_blank" rel="nofollow" class="tuijian_auth tuijian_authcolor">Shen Yunzhong,</a> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Francis Olivier&option=202" target="_blank" rel="nofollow" class="tuijian_auth tuijian_authcolor">Francis Olivier,</a> <a href="/journal-foreign-34677/" target="_blank" rel="nofollow" class="tuijian_authcolor">Journal of geophysical research. 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