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Dual satellite navigation system

机译:双卫星导航系统

摘要

A method and system for determining the position of an object using a fixed station and a plurality of earth orbit satellites whose positions are known. Separate periodic signals are transmitted from the fixed station via first and second satellites to the object whose postion is to be determined. The phase offset in periodic characteristics of the periodic signals as received from the first and second satellites is measured at the object. The phase offset corresponds to a relative time difference in propagation of the signals traveling two different paths to the object. The object transmits via the first satellite a return signal indicative of the measured relative time difference. This return signal is activated some time in the future according to the object local time, which is slaved to receipt of the periodic signal sent through the first satellite. This future time is the start of the particular time period as decided by the fixed station's schedule. At the fixed station, an instantaneous round trip delay, determined by the time offset of the current transmission clock time relative to the receive clock time of reception of the return signal, along with the measured relative time difference sent back on the return signal, is used to calculate the distances between the first and second satellites to the object. From these distances the position of the object is calculated.
机译:一种使用固定站和位置已知的多个地球轨道卫星确定物体位置的方法和系统。固定的信号通过第一和第二卫星从固定站传输到要确定位置的对象。从第一和第二卫星接收的周期性信号的周期性特征中的相位偏移是在物体处测量的。相位偏移对应于传播通过两个不同路径到达物体的信号传播的相对时间差。物体经由第一卫星发送指示所测量的相对时间差的返回信号。此返回信号将在将来某个时间根据对象本地时间激活,这取决于接收到通过第一颗卫星发送的周期性信号。此未来时间是固定站时间表确定的特定时间段的开始。在固定站,由当前传输时钟时间相对于返回信号接收的接收时钟时间的时间偏移以及在返回信号上发送回的测得的相对时间差确定的瞬时往返延迟为用于计算第一颗卫星和第二颗卫星到物体的距离。根据这些距离,可以计算出物体的位置。

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