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TETHERED SATELLITE-BASED HIGH PRECISION MAGNETIC FIELD MEASUREMENT TECHNIQUES

机译:基于卫星卫星的高精度磁场测量技术

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As the developing of science, geomagnetic survey is applied quite widely. It's an exigent need to gain accurate results of geomagnetic survey. Geomagnetic is a vector field, which needs multidimensional observations to reduce the possibilities of the earth physics explanation. This paper design a constellation scheme, which is composed of five tethered formation units, one contains two satellites connected with a tether. One of the units local at the 550km equator circular orbit, the rest local at the 450km near-polar orbit. The geomagnetic survey payloads are fixed on the stretching structure on the two satellites in a formation by the super optical platform. The simulation shows that the scheme can gain accurate data of geomagnetic survey. The mode of the tethered formation keeps the payloads away from the electromagnetism disturbing of the satellite platform; further, it can achieve graduation information of the geomagnetic. In the geomagnetic survey from space, the use of constellation and tethered formation can greatly improve spatial resolution and separate the variation of time and space. Moreover, we can obtain the global geomagnetic information more quickly to separate the geomagnetic field of the interior and exterior source.
机译:随着科学的发展,地磁测量技术得到了广泛的应用。迫切需要获得准确的地磁测量结果。地磁是一个矢量场,需要进行多维观测以减少对地球物理学进行解释的可能性。本文设计了一种星座方案,该方案由五个拴系编队组成,一个包含两个与拴系在一起的卫星。其中一个单位位于550公里赤道圆轨道上,其余单位位于450公里近极轨道上。地磁勘测有效载荷通过超光学平台固定在地层的两颗卫星的伸展结构上。仿真结果表明,该方案能获得准确的地磁测量数据。束缚编队的模式使有效载荷远离卫星平台的电磁干扰。进一步,可以实现地磁的分度信息。在从空间进行地磁测量时,使用星座图和系留地层可以大大提高空间分辨率,并分离时空变化。此外,我们可以更快地获得全局地磁信息,以分离内部和外部源的地磁场。

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