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导频脉冲载波频率的快速捕获与跟踪 被引量:1
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作者 张江林 吕善伟 +1 位作者 董胜波 韦志棉 《北京航空航天大学学报》 EI CAS CSCD 北大核心 2008年第6期643-646,共4页
针对短时导频脉冲载波频率的同步问题,提出一种快速捕获和跟踪方法.该方法采用相位推算法进行快速载波频率初估计,完成频率的捕获.相位推算法首先利用最小二乘法估计实采样点的相位,再应用相位解卷、一元线性回归和最小二乘法拟合求取... 针对短时导频脉冲载波频率的同步问题,提出一种快速捕获和跟踪方法.该方法采用相位推算法进行快速载波频率初估计,完成频率的捕获.相位推算法首先利用最小二乘法估计实采样点的相位,再应用相位解卷、一元线性回归和最小二乘法拟合求取信号频率的估值,其测频精度优于常用的Prony算法,在高信噪比情况下逼近实正弦信号的Cramer-Rao界.应用数字下变频和Kay算法实现频率的跟踪,通过建立仿真模型,验证其跟踪精度优于叉积自动频率控制环.在给出的设计实例中,对于脉宽为1 ms的导频脉冲,在信噪比大于13 dB的情况下,环路频率跟踪的最大误差小于3Hz. 展开更多
关键词 导频脉冲 载波同步 率估计 相位推算法
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A novel period estimation method for X-ray pulsars based on frequency subdivision 被引量:2
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作者 Li-rong SHEN Xiao-ping LI +2 位作者 Hai-feng SUN Hai-yan FANG Meng-fan XUE 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2015年第10期858-870,共13页
Period estimation of X-ray pulsars plays an important role in X-ray pulsar based navigation (XPNAV). The fast Lomb periodogram is suitable for period estimation of X-ray pulsars, but its performance in terms of freq... Period estimation of X-ray pulsars plays an important role in X-ray pulsar based navigation (XPNAV). The fast Lomb periodogram is suitable for period estimation of X-ray pulsars, but its performance in terms of frequency resolution is limited by data length and observation time. Longer observation time or oversampling can be employed to improve frequency analysis results, but with greatly increased computational complexity and large amounts of sampling data. This greatly restricts real-time autonomous navigation based on X-ray pulsars. To resolve this issue, a new method based on frequency subdivision and the continuous Lomb periodogram (CLP) is proposed to improve precision of period estimation using short-time observation data. In the proposed method, an initial frequency is first calculated using fast Lomb periodogram. Then frequency subdivision is per- formed near the initial frequency to obtain frequencies with higher precision. Finally, a refined period is achieved by calculating the CLP in the obtained frequencies. Real data experiments show that when observation time is shorter than 135 s, the proposed method improves period estimation precision by 1-3 orders of magnitude compared with the fast Lomb periodogram and fast Fourier transform (FFT) methods, with only a slight increase in computational complexity. Furthermore, the proposed method performs better than efsearch (a period estimation method of HEAsoft) with lower computational complexity. The proposed method is suitable for estimating periods of X-ray pulsars and obtaining the rotation period of variable stars and other celestial bodies. 展开更多
关键词 Pulsar navigation Period estimation Frequency subdivision Continuous Lomb periodogram
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