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Method And System For Repurposing Of A Global Navigation Satellite System Receiver For Receiving Low-Earth Orbit Communication Satellite Signals

机译:一种用于接收低地球轨道通信卫星信号的全球导航卫星系统接收机的方法和系统

摘要

Methods and systems for repurposing of a global navigation satellite system receiver for receiving low-earth orbit (LEO) communication satellite timing signals may comprise receiving medium Earth orbit (MEO) satellite signals and/or LEO signals in a receiver of the communication device. A radio frequency (RF) path may be configured to down-convert either of the signals, and a position of the communication device may be calculated utilizing the down-converted signals. The signals may be down-converted utilizing a local oscillator signal generated by a phase locked loop (PLL), which may be delta-sigma modulated via a fractional-N divider. A clock signal may be communicated to the PLL utilizing a temperature-compensated crystal oscillator. The signals may be down-converted to an intermediate frequency or down-converted directly to baseband frequencies. The signals may be processed utilizing surface acoustic wave (SAW) filters. In-phase and quadrature signals may be processed in the RF path utilizing a two-stage polyphase filter.
机译:用于重新定位全球导航卫星系统接收机以接收低地球轨道(LEO)通信卫星定时信号的方法和系统可以包括在通信设备的接收机中接收中等地球轨道(MEO)卫星信号和/或LEO信号。射频(RF)路径可以被配置为下变频这些信号中的任一个,并且可以利用下变频的信号来计算通信设备的位置。信号可利用锁相环(PLL)生成的本地振荡器信号进行下变频,该锁相环可通过分数N分频器进行delta-sigma调制。可以利用温度补偿晶体振荡器将时钟信号传送到PLL。信号可以被下变频为中频或直接下变频为基带频率。可以利用表面声波(SAW)滤波器来处理信号。可以使用两级多相滤波器在RF路径中处理同相和正交信号。

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