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Model Predictive Technology Based Integrated Orbit and Attitude Control of Inner-Formation Gravity Field Measurement Satellite

机译:基于模型预测技术的内部重力场测量卫星的轨道和姿态综合控制

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The Inner-Formation gravity field measurement satellite (IFS) was proposed to measure Earth's gravity field with high precision through precise orbit determination and relative state measurement. A coupled orbit and attitude linear model was constructed for the Inner-Formation during steadystate phase. The output was approximated by Taylor series expansion, and the facility capacities and system performances were transformed into adaptive constraints. The optimal control for integrated orbit and attitude control was obtained through the combination of model predictive control (MPC) technology and quadratic programming. Simulation results demonstrated that the MPC technology was a feasible and effective solution to the integrated orbit and attitude control for IFS.
机译:提出了“地层重力场测量卫星”(IFS),该卫星通过精确的轨道确定和相对状态测量来高精度地测量地球重力场。建立了稳态阶段内部形成的轨道和姿态耦合的线性模型。通过泰勒级数展开来近似输出,并将设施容量和系统性能转换为自适应约束。通过模型预测控制(MPC)技术和二次规划相结合,获得了对综合轨道和姿态控制的最优控制。仿真结果表明,MPC技术是IFS综合轨道和姿态控制的可行和有效的解决方案。

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