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Smoothing GPS carrier phase double differences using inertial measurements for high performance applications

机译:使用惯性测量为高性能应用平滑GPS载波相位双差

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This paper will describe an enhancement to the GPS double difference carrier phase measurements on a single airborne platform by smoothing them with inertial measurements while preserving the dynamic bandwidth. This enhancement will reduce the impact of carrier phase multipath and carrier phase noise on baseline determination between multiple antennas on an aircraft when in flight. This type of measurement system has numerous applications where platform pointing and relative body motion must be determined at the mm-level for applications such as sensor stabilization, Synthetic Aperture Radar, long range RADAR (i.e. angle-of-arrival measurements). Lower noise levels (mm-level and below) enable more performance to the stabilized system such as increased aperture for longer range, operation at higher frequencies, and more image resolution. The focus of this paper will be on a technique to provide this enhanced performance for these various applications using the available navigation systems. Additionally, this type of smoothing can effectively remove the additional noise induced by carrier phase measurement differencing. The noise level of a double or triple difference can be reduced below that of the raw measurement. A complimentary synthesized double difference quantity with ultra-low-noise characteristics will be used to smooth the GPS carrier phase double difference measurements without losing dynamic bandwidth since it follows the airborne dynamics. Flight test data will be presented to demonstrate the performance improvement in the midst of aircraft dynamics. Results will show that the noise reduction follows the theoretical prediction.
机译:本文将描述通过在保持动态带宽的同时用惯性测量对它们进行平滑来对单个机载平台上的GPS双差载波相位测量进行的增强。这种增强将减少载波相位多径和载波相位噪声对飞行中飞机上多个天线之间的基线确定的影响。这种类型的测量系统具有众多应用,其中必须在毫米级确定平台指向和相对身体运动,以用于诸如传感器稳定,合成孔径雷达,远程RADAR(即到达角测量)之类的应用。较低的噪声水平(毫米级及以下)可为稳定的系统提供更高的性能,例如,更大的光圈可实现更长距离的拍摄,更高频率下的操作以及更高的图像分辨率。本文的重点将放在使用可用的导航系统为这些各种应用程序提供增强性能的技术上。另外,这种类型的平滑可以有效地消除由载波相位测量差异引起的额外噪声。两倍或三倍差异的噪声水平可以降低到原始测量值以下。具有超低噪声特性的互补合成双差量将用于平滑GPS载波相位双差测量,而不会丢失动态带宽,因为它遵循机载动力学。将提供飞行测试数据,以证明在飞机动力学过程中性能的提高。结果将表明降噪遵循理论预测。

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