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Optimization design for main supporting structure of the off-axis TMA Space Remote Sensor

机译:离轴TMA空间遥感器主要支撑结构的优化设计

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In order to obtain a lightweight and high-stiffness main supporting structure of Space Remote Sensor, Main supporting structure of Space Remote Sensor with TMA optical systems were studied by way of Finite Element Method (FEM).The stiffness of the supporting structure was validated with normal modes analysis. In order to improve its fundamental frequency (the first order natural frequency), a topologic optimization design method of Space Remote Sensor was presented. Modal analysis parameter is optimized and the best material distribution is searched. Based on the analysis above, main supporting structure with high stiffness of the Space Remote Sensor is designed. The analysis results indicate that the fundamental frequency of Space Remote Sensor raises from 54.6 Hz to 73 Hz, The numerical results indicate that after adopting the topologic optimization design method, the capability of the main supporting structure is enhanced, Which shows that optimized support structures can meet the system design requirements, and above analysis has a certain instructional significance for the design of main supporting structures in offaxis three-mirror reflective Space Remote Sensors.
机译:为了获得轻巧,高刚度的空间遥感器主支撑结构,采用有限元方法(FEM)对带有TMA光学系统的空间遥感器主支撑结构进行了研究,验证了支撑结构的刚度正常模式分析。为了提高其基本频率(一阶固有频率),提出了一种空间遥感器的拓扑优化设计方法。优化模态分析参数并搜索最佳材料分布。基于以上分析,设计了空间遥感器高刚度的主要支撑结构。分析结果表明,空间遥感器的基本频率从54.6 Hz提高到73 Hz,数值结果表明,采用拓扑优化设计方法后,主支撑结构的能力得到增强,表明优化的支撑结构可以满足系统设计要求,以上分析对离轴三镜反射式空间遥感器主要支撑结构的设计具有一定的指导意义。

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