机构地区: 同济大学土木工程学院测量与国土信息工程系
出 处: 《地球物理学报》 2007年第1期106-110,共5页
摘 要: 讨论了基于CHAMP卫星动力学轨道数据以及加速度计数据推求地球重力场模型的动力学法,推导了将加速度计观测数据的尺度和偏差以及卫星初始状态向量与地球重力场位系数一起求解的数学模型.采用CHAMP卫星120天的动力学轨道数据和加速度数据解算出50阶次的地球重力场模型TJCHAMP01S,并利用各种方法对该模型进行了检核,结果表明:TJCHAMP01S模型精度优于相同阶次的EGM96和EIGEN-1S模型. We discuss the dynamical method for recovering the gravity field model based on the dynamical orbits and accelerometer data of CHAMP and derive the mathematical algorithm to solve the accelerometer scale and bias, the satellite' s initial state vector and the model coefficients simultaneously. The gravity field model TJCHAMPO1S has been recovered with the 120-day CHAMP data including dynamical orbits and accelerometer data, and validated based on various criteria. The results show that the model TJCHAMPO1S is more accurate than the EGM96 and EIGEN-1S model of the same degree and order.