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METHOD OF INDEPENDENT COLLOCATION IN GEOSTATIONARY ORBIT

机译:静止轨道的独立配准方法

摘要

FIELD: transport.;SUBSTANCE: invention relates to aerospace engineering and can be used for independent collocation in geostationary orbit. Inclination and eccentricity vectors are changed to boundaries of aiming areas spaced apart relative to each other. Spacecraft orbit parameters are measured to define current orbital parameters of every spacecraft. Spacecraft with self-collocation is brought to preset retention area in latitude and longitude Pattern of control over adjacent spacecraft gravity centre control is revealed. Aiming area centre position is refined relative to adjacent spacecraft inclination. Inclinations of self-collocation spacecraft orbit in phase plane with allowance (current direct Sun climb), adjacent spacecraft orbit nodes lines and centre are corrected. Low-thrust engines are used to correct period of orbit revolution, inclination and eccentricity, or deviation in the case of dangerous approach.;EFFECT: ruled out radio interferences, self-collocation by control centre.;4 dwg
机译:技术领域本发明涉及航空航天工程,并且可以用于对地静止轨道中的独立配置。倾斜度和偏心向量更改为彼此相对隔开的瞄准区域的边界。测量航天器的轨道参数以定义每个航天器的当前轨道参数。将具有自我配置的航天器带到经度和纬度的预设保留区域,揭示了对相邻航天器重心控制的控制模式。瞄准区域中心位置相对于相邻航天器的倾斜度进行了细化。修正自配置航天器轨道在相平面内的倾斜度(当前有太阳直升),相邻航天器轨道节点线和中心的倾斜度。低推力发动机用于纠正在危险进近情况下的公转周期,倾斜度和偏心率或偏差。效果:排除无线电干扰,控制中心自行配置; 4 dwg

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