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An approved frequency tracking method in connected element interferometry

机译:连接元件干涉测量中的经批准的频率跟踪方法

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Carrier tracking loop is a basic method of frequency tracking in CEI (connected element interferometry), but the tracking error is very large or even worse at high dynamic. To solve this problem, a frequency tracking method assisted by open loop frequency estimation is proposed in this paper. First, an open-loop frequency estimation algorithm is used to estimate the frequency of signals at different moments, then, the least squares fitting method is used to estimate the corresponding dynamic parameters of different orders. Next, a local signal is generated to compensate the received signal. After eliminating most of the dynamic characteristics, the signal is fed into PLL (Frequency locked loop) and high-precision frequency tracking results can be obtained. Simulation results show that, in the condition of low SNR, the new method has higher accuracy than the method assisted by FLL (Frequency locked loop), and the processing time is shorter. When there is a two order Doppler frequency change, the open-loop assisted method can overcome the steady phase error of the PLL, and is of great significance in the applications of connected elements interferometry.
机译:载波跟踪环是CEI(连接元件干涉测量)中频率跟踪的基本方法,但跟踪误差在高动态时非常大甚至更差。为了解决这个问题,本文提出了一种通过开环频率估计辅助的频率跟踪方法。首先,使用开环频率估计算法来估计不同时刻的信号频率,然后,使用最小二乘拟合方法来估计不同订单的相应动态参数。接下来,生成局部信号以补偿接收的信号。在消除大部分动态特性之后,将信号馈入PLL(频率锁定环路),并且可以获得高精度频率跟踪结果。仿真结果表明,在低SNR的条件下,新方法的精度比FLL(频率锁定环)辅助的方法更高,并且处理时间较短。当有两个阶多普勒频率变化时,开环辅助方法可以克服PLL的稳定相位误差,并且在连接元件干涉测量的应用中具有重要意义。

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