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首页> 外文期刊>International journal of aerospace engineering >High-Accuracy and Low-Cost Attitude Measurement Unit of the CubeSat
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High-Accuracy and Low-Cost Attitude Measurement Unit of the CubeSat

机译:立方体的高精度和低成本姿态测量单位

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This paper proposes high-accuracy and reliable attitude measurement methods exclusive for CubeSat with restrictions of low cost, limited space, and low power consumption. The attitude measurement unit is equipped with Commercial Off-The-Shelf (COTS) components including Micro-Electro-Mechanical System (MEMS) gyro and two simultaneously operating star trackers (STR) to enhance the measurement accuracy. The Multiplicative Extended Kalman Filter (MEKF) is used to estimate the attitude of CubeSat, and four kinds of attitude estimation layouts are put forward according to the idea of weighted average of two quaternions from two STR and different architectures of information fusion. Using the proposed methods, the attitude measurement unit can continuously provide accurate and reliable attitude knowledge for attitude control unit when the CubeSat is running in orbit. Numerical simulation is performed to verify the effectiveness of the proposed methods, and it offers a reference for CubeSat developers from the perspective of engineering application.
机译:本文提出了高精度和可靠的姿态测量方法,专用于CubeSat,具有低成本,有限的空间和低功耗的限制。姿态测量单元配备有商业现成(COTS)组件,包括微机电系统(MEMS)陀螺仪和两个同时操作星跟踪器(STR),以提高测量精度。乘法扩展卡尔曼滤波器(MEKF)用于估计CubeSat的姿态,并且根据来自两个STR和不同信息融合架构的两个四元数的加权平均概念提出了四种姿态估计布局。使用所提出的方法,当CubeSat在轨道运行时,姿态测量单元可以连续为姿态控制单元提供准确可靠的姿态知识。执行数值模拟以验证所提出的方法的有效性,并从工程应用的角度提供CubeSat开发人员的参考。

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