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首页> 外文期刊>Journal of Spacecraft and Rockets >In Situ Navigation of Spacecraft Formations in High-Altitude and Extraterrestrial Orbits
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In Situ Navigation of Spacecraft Formations in High-Altitude and Extraterrestrial Orbits

机译:高空和地球外轨道航天器编队的原位导航

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摘要

An investigation was performed to evaluate sensor suitability and performance for formation flying in a variety of spaceborne environments. This was done as a precursor to the development of strategies for novel uses of satellite formations in environments other than low Earth orbit. Sensor models were developed to allow for a uniform treatment in processing range measurements. A formation simulation environment was then produced that included representative formation geometries, sensor noises, and navigation filters. The formations studied included highly elliptical and libration point orbits. The equations of motion were modified to account for a more accurate propagation of elliptical orbits, and an estimator was designed that allowed for large propagation times without global positioning system measurements. A high-accuracy transponder measurement was added and evaluated to give improved performance to accuracies of a few meters. A similar study was performed for the libration point orbit without the capability to track global positioning system signals.
机译:进行了一项研究,以评估传感器在各种空间环境中对编队飞行的适用性和性能。这样做是为了在低地球轨道以外的环境中开发新的卫星编队策略的先驱。开发传感器模型以允许在处理范围测量中进行统一处理。然后产生了包括代表性地层几何形状,传感器噪声和导航滤波器在内的地层仿真环境。研究的编队包括高度椭圆和解放点的轨道。修改了运动方程,以解决椭圆轨道更精确的传播问题,并设计了一种估算器,该估算器无需进行全球定位系统测量即可实现较长的传播时间。添加了高精度应答器测量并对其进行了评估,以提高几米精度的性能。在没有跟踪全球定位系统信号的能力的情况下,对释放点轨道进行了类似的研究。

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