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Research of orbit determination system using magnetometers for micro-satellite based on SoPC

机译:基于SoPC的微卫星磁力计定轨系统研究

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A low-cost, low-power and autonomous orbit determination system on chip for micro-satellites is proposed to solve the problems of high-cost, large-volume, high-power and low autonomous on traditional orbit determination systems. Using system on programmable chip (SoPC) as the hardware platform, and a 3-degree magnetometer with low power consumption is integrated in it. The state equations based on the satellite orbit dynamic equation are built and the observation equations with geomagnetic field vector are derived with the International Geomagnetic Reference Field (IGRF) model. The accurate output of position and velocity of micro-satellites are acquired by Extending Kalman Filter (EKF). To verify the feasibility of the system, a ground simulation system is designed with a magnetic simulator. Test results indicate that the system can reach the medium accuracy of micro-satellites orbit determination and can serve for micro-satellites with low position and velocity errors.
机译:提出了一种低成本,低功耗,自主的微卫星片上轨道确定系统,以解决传统轨道确定系统的高成本,大容量,高功率,低自主性的问题。使用可编程芯片系统(SoPC)作为硬件平台,并集成了一个低功耗的3度磁力计。建立了基于卫星轨道动力学方程的状态方程,并利用国际地磁参考场(IGRF)模型推导了具有地磁场矢量的观测方程。通过扩展卡尔曼滤波器(EKF)获得了微卫星位置和速度的准确输出。为了验证该系统的可行性,设计了带有磁模拟器的地面模拟系统。测试结果表明,该系统可以达到微卫星定轨的中等精度,可用于位置和速度误差较小的微卫星。

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