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Digital treatment technology of global positioning system receiver

机译:全球定位系统接收机的数字处理技术

摘要

A Global Positioning System (GPS) commercial receiver is provided with a digital processor that can utilize to advantage P-code modulated L1 and L2 satellite signals which have been modulated with an unknown security code. Integration of the L1 and L2 signals, after demodulation by locally generated carrier and P-code signals and is repetitively accomplished over a duration that is estimated to be the period of the modulation code. The C/A-code L1 signal, which is not modulated with the unknown security code and is also used in locking the locally generated carrier and P-code generators in phase with the received L1 and L2 satellite signals. A interpolative technique is used for adjusting the phase of the locally generated carriers and code in increments much smaller than the period clock sources. Those locked phases can then be utilized to determine position, distance, time and etc., as is done in GPS receivers not utilizing the anti-spoofed signals but with increased accuracy and resolution. A novel structure of the GPS receiver radio frequency and intermediate frequency sections, having a specific combination of demodulating frequencies and is also disclosed.
机译:全球定位系统(GPS)商业接收器配有数字处理器,可以利用P调制的L1和L2卫星信号进行调制,这些信号已经用未知的安全代码进行了调制。 L1和L2信号的积分在通过本地生成的载波和P码信号进行解调之后,在估计为调制码周期的持续时间内重复完成。 C / A码L1信号未用未知的安全码进行调制,还用于锁定本地生成的载波和P码生成器,使其与接收到的L1和L2卫星信号同相。内插技术用于调整本地生成的载波的相位,并以比周期时钟源小得多的增量进行编码。然后,可以将那些锁定的相位用于确定位置,距离,时间等,就像在GPS接收器中所做的那样(不利用反欺骗信号,而是提高精度和分辨率)。还公开了具有解调频率的特定组合的GPS接收机射频和中频部分的新颖结构。

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