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Simple to implement systems and practices of non-geostationary satellite constellation that you can track the satellite

机译:易于实施的非对地静止卫星星座的系统和实践,可以跟踪卫星

摘要

[ purposes ) global on the earth station is simple the satellite is can be tracked and inclined elliptical orbit satellite of constellation execution system and method for implementing to provide a . SOLUTION, MEANS: satellite orbit the earth a peripheral a pair of repeatedly ground to form a track having . The ground track , in the satellite a stationary satellite of the characteristic of the many for emulating , equatrial sufficiently upper or lower part of the active only in the operation of the arc . Two ground track in operation of the arc point so as to match the , i.e. one side of the ground track one of the active arc-ignition the operation of the end point of the other one of the ground track of the active operation of the arc starting point and the same so as to a satellite orbit of the parameter is adjusted . The active arc and the satellite for communicating with an earth station for an active in the satellite , in high elevation angle in the empty that the ************ the pass around in one direction is slowly moved so that it can be seen . A316 10
机译:[目的]地球站上的全球简单卫星是可跟踪星座执行系统的倾斜椭圆轨道卫星的实现方法和实现的方法。解决方案,手段:卫星绕地球轨道外围一对反复接地以形成具有的轨道。地面轨道,在人造卫星上具有许多特征的静止卫星,仅在电弧的作用下,足以模仿主动赤道的上部或下部。两个接地轨道在工作中的弧点相匹配,即,接地轨道的一侧与主动电弧的点火端的运行点相匹配,另一接地轨道的另一端则对电弧的活跃操作性起作用起始点与卫星轨道的参数相同。主动弧和卫星用于与卫星中的主动地球站通信,在空空的高仰角下,**********在一个方向上的通过缓慢移动,因此可以看出。 A316 10

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