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基于DDS技术的Loran—C信号源的杂散信号抑制的分析与实现
引用本文:皇甫江,华宇,李实锋.基于DDS技术的Loran—C信号源的杂散信号抑制的分析与实现[J].时间频率学报,2014(1):41-48.
作者姓名:皇甫江  华宇  李实锋
作者单位:[1]中国科学院国家授时中心,西安710600 [2]中国科学院精密导航定位与定时技术重点实验室,西安710600 [3]中国科学院大学,北京100049
基金项目:中国科学院“西部之光”联合学者资助项目(2007LH01);中国科学院科研装备研制资助项目(YZ201218)
摘    要:采用直接数字频率合成(DDS)技术设计的Loran—C信号源,具有输出杂散多且难以预测的缺点。基于对DDS基本原理的研究分析,针对DDS输出信号存在的相位舍位杂散问题,对其关键部位的相位累加模块进行优化设计,并基于FPGA技术,在QuartusII环境下完成了对Loran.C信号源的实现与仿真验证。结果表明,通过优化的设计算法能够产生失真小,稳定度好的输出波形,从而验证了该方法抑制杂散的有效性与可行性。

关 键 词:罗兰-C  直接数字频率合成  相位舍位杂散  相位累加  现场可编程门阵列(FPGA)

Analysis and implementation of spurious signal suppression for Loran-C signal source based on DDS technology
HUANG Pu-jiang,HUA Yu,LI Shi-feng.Analysis and implementation of spurious signal suppression for Loran-C signal source based on DDS technology[J].Journal of Time and Frequency,2014(1):41-48.
Authors:HUANG Pu-jiang  HUA Yu  LI Shi-feng
Institution:1. National Time Service Center, Chinese Academy of Sciences, Xi'an 710600, China; 2. Key Laboratory of Precision Navigation and Timing Technology, National Time Service Center, Chinese Academy of Science, Xi'an 710600, China; 3. University of Chinese Academy of Sciences, Beijing 100049, China)
Abstract:A shortcoming of the Loran-C signal source designed with DDS(direct digital frequency synthesis) technology is that there are much unpredictable spurious signals in the output. According to the basic principle of the DDS and aiming at the spurious signal caused by phase-truncation, we optimized the design of the phase accumulation module, a key part of the direct digital frequency synthesizer. And based on FPGA technology we completed the implementation and simulation/verification of the Loran-C signal source under the Quartus II environment. The results show that an output waveform with small distortion and good stability can be generated through the optimization of the design algorithm, thereby the validity and feasibility of the optimized design method in spurious suppression are verified.
Keywords:Loran-C  direct digital frequency synthesis  spurious signal caused by phase-truncation  phaseaccumulation  FPGA(field programmable gate array)
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