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METHODS AND SYSTEMS FOR ACQUISITION, REACQUISITION AND TRACKING OF WEAK NAVIGATIONAL SIGNALS

机译:弱导航信号的获取,重新获取和跟踪的方法和系统

摘要

Provided herein are systems and methods for achieving long coherent integration in a navigational receiver to improve the sensitivity of the receiver and enable the receiver to acquire, reacquire and track signals under very weak signal conditions. In an embodiment, phase compensation is computed based on estimated Doppler frequency, rate of change of the Doppler frequency with time, and second order rate of change of the Doppler frequency. The Doppler frequency may be computed from an orbital model or ephemeris. This phase compensation is used to compensate samples of the input signal for changes in the phase due to the Doppler frequency. Frequency components of the phase-compensated samples are then computed using a frequency analysis such as a Fast Fourier Transform (FFT). The maximum frequency component is taken as an error frequency and used to compensate the samples of the input signal for residual frequency error.
机译:本文提供了用于在导航接收机中实现长相干集成以提高接收机的灵敏度并使接收机能够在非常弱的信号条件下获取,重新获取和跟踪信号的系统和方法。在一个实施例中,基于估计的多普勒频率,多普勒频率随时间的变化率以及多普勒频率的二阶变化率来计算相位补偿。可以根据轨道模型或星历来计算多普勒频率。该相位补偿用于补偿输入信号的样本,以补偿由于多普勒频率引起的相位变化。然后,使用诸如快速傅立叶变换(FFT)之类的频率分析来计算相位补偿采样的频率分量。最大频率分量被视为误差频率,并用于补偿输入信号的采样以消除残留频率误差。

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