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A New Method for Land Vehicle Gravimetry Using SINS/VEL

机译:基于SINS / VEL的陆地车辆重力测量的新方法

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The use of Global Navigation Satellite System (GNSS) data for land vehicle gravimetry tests is challenged by complicated environments. A new approach for land vehicle gravimetry using a Strapdown Inertial Navigation System and velometer-integrated navigation computation (SINS/VEL) without using GNSS information has been put forward. Aided by the velometer with continuous longitudinal velocity output instead of GNSS signals, a SGA-WZ02 strapdown gravimeter that used the SINS/VEL method was tested in 2015. Four repeated lines were measured along a south-north direction highway in Eastern Changsha to verify the new method’s feasibility and performance. The gravity disturbance results showed an internal accuracy in scalar gravimetry about 1.17 mGal and 1.91 mGal for external accuracy assessment, with a spatial resolution of 1.7 km. Comparing this new method with the traditional SINS/GNSS gravimetry approach, it appeared that the results using SINS/VEL showed comparable internal and external accuracy. Theoretical analysis and practical test results showed that the new method was feasible for gravity determination by land dynamic vehicle.
机译:在复杂的环境中,将全球导航卫星系统(GNSS)数据用于陆地车辆重量测试的挑战很大。提出了一种使用捷联惯性导航系统和测速仪集成导航计算(SINS / VEL)而不使用GNSS信息的陆地车辆重力测量的新方法。借助具有连续纵向速度输出而不是GNSS信号的测速仪,在2015年对使用SINS / VEL方法的SGA-WZ02捷联式重力仪进行了测试。沿着长沙东部的南北方向高速公路测量了四条重复的线,以验证新方法的可行性和性能。重力扰动结果表明,标量重量法的内部精度约为1.17 mGal,外部精度评估约为1.91 mGal,空间分辨率为1.7 km。将该新方法与传统的SINS / GNSS重量分析方法进行比较,似乎使用SINS / VEL的结果显示出可比的内部和外部精度。理论分析和实际试验结果表明,该方法对于陆上动力车辆的重力确定是可行的。

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