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时钟抖动对中频线性调频采样及脉冲压缩影响的研究

陈佳民 童智勇 杨汝良

陈佳民, 童智勇, 杨汝良. 时钟抖动对中频线性调频采样及脉冲压缩影响的研究[J]. 电子与信息学报, 2010, 32(7): 1686-1691. doi: 10.3724/SP.J.1146.2009.00926
引用本文: 陈佳民, 童智勇, 杨汝良. 时钟抖动对中频线性调频采样及脉冲压缩影响的研究[J]. 电子与信息学报, 2010, 32(7): 1686-1691. doi: 10.3724/SP.J.1146.2009.00926
Chen Jia-min, Tong Zhi-yong, Yang Ru-liang. Research for the Effect on Intermediate Frequency Sampling and Pulse Compression Due to Clock Jitter[J]. Journal of Electronics & Information Technology, 2010, 32(7): 1686-1691. doi: 10.3724/SP.J.1146.2009.00926
Citation: Chen Jia-min, Tong Zhi-yong, Yang Ru-liang. Research for the Effect on Intermediate Frequency Sampling and Pulse Compression Due to Clock Jitter[J]. Journal of Electronics & Information Technology, 2010, 32(7): 1686-1691. doi: 10.3724/SP.J.1146.2009.00926

时钟抖动对中频线性调频采样及脉冲压缩影响的研究

doi: 10.3724/SP.J.1146.2009.00926

Research for the Effect on Intermediate Frequency Sampling and Pulse Compression Due to Clock Jitter

  • 摘要: 时钟抖动是模数转换过程中影响信号信噪比的最主要因素之一。该文从时域连续信号角度出发,按照高斯随机过程模型,分析了时钟抖动对基带和中频线性调频信号信噪比的影响并给出了近似公式。结合量化噪声的影响,可定量计算影响信噪比各因素之间的关系。仿真结果表明适用于模数转换后所得离散数字信号信噪比计算。合成孔径雷达经过脉冲压缩得到图像,为了抑制旁瓣需要使用窗函数加权,分析了时钟抖动在加窗前后对脉冲压缩时峰值旁瓣比和积分旁瓣比的影响。最后讨论了一些减小时钟抖动的具体措施。
  • Boerner W M. Recent advances in microwave multi-modalSAR remote sensing of the terrestrial covers[C]. InternationalConference on Recent Advances in Microwave Theory andApplications (MICROWAVE 2008), Jaipur, India, Nov.21-24, 2008: 201-204.[2] Brenner A R and Roessing L. Radar imaging of urbanareas by means of very high-resolution SAR andinterferometric SAR[J]. IEEE Transactions on Geoscienceand Remote Sensing, 2008, 46(10): 2971-2982.[3] Ramon B, Michael E, and Richard B. Interferometricabsolute phase determination with TerraSAR-X widebandSAR data[C]. IEEE Radar Conference, Pasadena, California,USA, May 4-8, 2009: 1-6.[4] Madden C, Oh K S, and Yuan X C. System leveldeterministic and random jitter measurement and extractionfor multi-gigahertz memory buses[C]. IEEE 13th TopicalMeeting on Electrical Performance of Electronic Packaging,Portland, Oregon, Oct. 25-27, 2004: 7-10.[5] Shinagawa M, Akazawa Y, and Wakimoto T. Jitter analysisof high-speed sampling systems [J]. IEEE Journal Solid-stateCircuits, 1990, 25(1): 220-224.[6] Awad S S. Analysis of accumulated timing-jitter in the timedomain [J]. IEEE Transactions on Instrumentation andMeasurement, 1998, 47(1): 69-73.[7] Hajimiri A, Limotyrakis S, and Lee T H. Jitter and phasenoise in ring oscillators[J]. IEEE Journal of Solid-stateCircuits, 1999, 34(6): 790-804.[8] Walden R H. Analog-digital converter survey and analysis [J].IEEE Journal on Selected Areas in Communications, 1999,17(4): 539-550.[9] Ahmed W K M. Quantization noise suppression in digitallysegmented amplifiers[J]. IEEE Transactions on Circuits andSystems I: Regular Papers, 2009, 56(3): 529-540.[10] Kobayashi H, Morimura M, Kobayashi K, and Onaya Y.Aperture jitter effects in wideband ADC systems[C]. 38thAnnual Conference Proceedings of the SICE. Morioka, Japan,Jul. 28-30, 1999: 1089-1094.[11] Kurosawa N, Kobayashi H, and Kogure H, et al.. Samplingjitter and finite aperture time effects in wideband dataacquisition systems[J]. IEICE Transactions on Fundamentals,2002, E85-A(2): 335-346.[12] Michael L and Gerhare F. The effects of aperture jitter andclock jitter in wideband ADCs[J]. Computer Standards Interfaces, 2007, 29(1): 11-18.[13] 唐婷, 何子述, 韩春林, 李会勇. 基于线性调频信号的ADC时钟抖动误差分析[J]. 系统工程与电子技术, 2008, 30(6):1008-1021.Tang Ting, He Zi-shu, Han Chun-lin, and Li Hui-yong.Analysis of shaking error in ADC based on linear frequencymodulated signal[J]. Systems Engineering and Electronics,2008, 30(6): 1008-1021.[14] 田新远, 董戈, 朱敏慧. 波形存储LFM 信号源设计误差分析[J]. 电子与信息学报, 2005, 27(8): 1240-1243.Tian Xin-yuan, Dong Ge, and Zhu Min-hui. Analysis of errorsin waveform storage LFM generator design[J]. Journal ofElectronics Information Technology, 2005, 27(8):1240-1243.
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出版历程
  • 收稿日期:  2009-06-26
  • 修回日期:  2009-09-21
  • 刊出日期:  2010-07-19

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