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Joint timing synchronization and frequency offset acquisition algorithm for MIMO OFDM systems 被引量:3
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作者 Liu Qi Hu Bo 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2009年第3期470-478,共9页
For multiple-input multiple-output (MIMO) orthogonal frequency division multiplexing (OFDM) systems, a joint timing synchronization and frequency offset acquisition algorithm based on fractional Fourier transform ... For multiple-input multiple-output (MIMO) orthogonal frequency division multiplexing (OFDM) systems, a joint timing synchronization and frequency offset acquisition algorithm based on fractional Fourier transform (FRFT) is proposed. The linear frequency modulation signals superimposed on the data signals are used as the training signals. By performing FRFT on the received signals and searching the peak value of the FRFT results, the receiver can realize timing synchronization and frequency offset acquisition simultaneously. Compared with the existing methods, the proposed algorithm can provide better timing synchronization performance and larger frequency offset acquisition range even under multi-path channels with low signal to noise ratio. Theoretical analysis and simulation results prove this point. 展开更多
关键词 multiple-input multiple-output orthogonal frequency division multiplexing timing synchronization frequency offset acquisition fractional Fourier transform.
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Fast fine acquisition algorithm of GPS receiver aided by INS information 被引量:6
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作者 Lufeng Zhu Chunxi Zhang Zhiqiang Ma 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2011年第2期300-305,共6页
Acquisition time of global position system (GPS) receiver, which is the main factor contributes to time to first fix (TTFF), can be shortened by estimating the Doppler frequency shift through external inertial nav... Acquisition time of global position system (GPS) receiver, which is the main factor contributes to time to first fix (TTFF), can be shortened by estimating the Doppler frequency shift through external inertial navigation system (INS) information and almanac data and reducing the searching area. The traditional fast acquisition is analyzed, the fast acquisition of the GPS receiver aided is presented by INS information, and the signal is fine captured by spectrum zooming. Then the algorithm is simulated by sampled GPS intermediate frequency (IF) signal and the result verifies that this acquisition can dramatically improve the capability of GPS receiver and reduce its acquisition time. 展开更多
关键词 inertial navigation system (INS) aid spectrum zooming acquisition time global position system (GPS) receiver.
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Impact of GPS Almanac Broadcast Strategy on the Signal Acquisition Time 被引量:1
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作者 Lu-Xiao Wang Zhi-Gang Huang Yun Zhao 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2013年第5期6-13,共8页
This paper investigates the problem of almanac affecting the signal acquisition time with two constraints: different age of data and multi-sets of almanac. The contributions made in this paper include: 1) the exploiti... This paper investigates the problem of almanac affecting the signal acquisition time with two constraints: different age of data and multi-sets of almanac. The contributions made in this paper include: 1) the exploiting of signal acquisition concept to extend well-known almanac function of predicting visible satellite and initializing signal acquisition to minimizing the signal acquisition time; 2) a model based on code phase and Doppler frequency to reflect the impact of multi-sets of almanac on the signal acquisition time; 3) the evaluation of the existing GPS almanac with different broadcast strategy. The theoretical analyses and simulations conducted on three sets of almanac show that the model proposed in this paper is general and efficient for almanac design and application. 展开更多
关键词 ALMANAC signal acquisition time age of data code phase doppler frequency
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Acquisition performance analysis for intersatellite optical communications with vibration influence
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作者 马晶 陆高原 +3 位作者 于思源 谭立英 付玉龙 黎发军 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第1期280-286,共7页
A stable and accurate pointing,acquisition system is an important part of initially building intersatellite optical communication links.Satellite platform vibration can cause the system instability and reduce the syst... A stable and accurate pointing,acquisition system is an important part of initially building intersatellite optical communication links.Satellite platform vibration can cause the system instability and reduce the system precision in building and maintenance of a satellite optical communication system.In this paper,vibration influence is consciously discussed by acquisition time for intersatellite optical communications.Analytical expression of acquisition possibility is derived,taking the scan parameters and platform vibration into account,and vibration influence on the multi-scan acquisition time is also presented.The theoretical result calculated by the proposed analytical expression is approximate to the result by the Monte Carlo simulation. 展开更多
关键词 optical communication systems optical communications acquisition time vibration influence
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A quantitative comparison of five optical coherence tomography angiography systems in clinical performance 被引量:2
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作者 Xin-Xin Li Wei Wu +6 位作者 Hao Zhou Jun-Jie Deng Meng-Ya Zhao Tian-Wei Qian Chen Yan Xun Xu Su-Qin Yu 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2018年第11期1784-1795,共12页
AIM: To compare the clinical performance of 4 spectraldomain(SD) optical coherence tomography angiography(OCTA) systems: AngioVueTM, AngioPlexTM, Spectralis? OCTA, AngioScan, and 1 swept-source(SS) OCTA SS OC... AIM: To compare the clinical performance of 4 spectraldomain(SD) optical coherence tomography angiography(OCTA) systems: AngioVueTM, AngioPlexTM, Spectralis? OCTA, AngioScan, and 1 swept-source(SS) OCTA SS OCT AngioTM. METHODS: Twenty-seven undilated right eyes of 27 participants underwent OCTA examination using five different systems respectively for both 3×3 and 6×6 mm^2 scan pattern(Spectralis OCTA for 3×3 mm^2 scan only). Image quality, including vessel valid visibility and the number of motion artifacts, and acquisition time were evaluated. Repeated measures analysis of variance(ANOVA) with Bonferroni's post-test and Friedman test with Dunn's posttest were used to compare measurements.RESULTS: The age of the subjects was 28.19±5.55 y(range, 23-49 y). The spherical equivalent refraction was-2.55±1.84 D(range, 0.00 to-5.25 D). Significant difference was observed in the evaluation of vessel valid visibility(Angio Vue the highest: 0.111±0.031 for 3×3 mm^2 scan and 0.128±0.020 for 6×6 mm^2 scan), number of motion artifacts(AngioVue the fewest: 0.778±1.086 for 3×3 mm^2 scan and 0.333±0.620 for 6×6 mm^2 scan) and acquisition time(AngioPlex the shortest: 8.537±1.921 s for 3×3 mm^2 scan and 8.298±1.741 s for 6×6 mm^2 scan; all P〈0.001). CONCLUSION: There is poor agreement of measurements among systems. AngioVue provides images with the highest vessel valid visibility and the fewest motion artifacts. AngioPlex achieves the shortest acquisition. 展开更多
关键词 optical coherence tomography angiography devices vessel valid VISIBILITY motion artifacts acquisition time
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ModiΡed pseudo-noise code regeneration method
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作者 Xiaojun Jin Zhonghe Jin Chaojie Zhang Jianwen Jiang Yangming Zheng 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2010年第3期370-374,共5页
A modiΡed pseudo-noise(PN) code regeneration method is proposed to improve the clock tracking accuracy without impairing the code acquisition time performance.Thus,the method can meet the requirement of high accura... A modiΡed pseudo-noise(PN) code regeneration method is proposed to improve the clock tracking accuracy without impairing the code acquisition time performance.Thus,the method can meet the requirement of high accuracy ranging measurements in short time periods demanded by radio-science missions.The tracking error variance is derived by linear analysis.For some existing PN codes,which can be acquired rapidly,the tracking error variance performance of the proposed method is about 2.6 dB better than that of the JPL scheme(originally proposed by Jet Propulsion Laboratory),and about 1.5 dB better than that of the traditional double loop scheme. 展开更多
关键词 regenerative pseudo-noise (PN) ranging chip tracking loop tracking error variance code acquisition time.
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Convergence Curve for Non-Blind Adaptive Equalizers
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作者 Monika Pinchas 《Journal of Signal and Information Processing》 2016年第1期7-17,共11页
In this paper a closed-form approximated expression is proposed for the Intersymbol Interference (ISI) as a function of time valid during the entire stages of the non-blind adaptive deconvolution process and is suitab... In this paper a closed-form approximated expression is proposed for the Intersymbol Interference (ISI) as a function of time valid during the entire stages of the non-blind adaptive deconvolution process and is suitable for the noisy, real and two independent quadrature carrier input case. The obtained expression is applicable for type of channels where the resulting ISI as a function of time can be described with an exponential model having a single time constant. Based on this new expression for the ISI as a function of time, the convergence time (or number of iteration number required for convergence) of the non-blind adaptive equalizer can be calculated. Up to now, the equalizer’s performance (convergence time and ISI as a function of time) could be obtained only via simulation when the channel coefficients were known. The new proposed expression for the ISI as a function of time is based on the knowledge of the initial ISI and channel power (which is measurable) and eliminates the need to carry out any more the above mentioned simulation. Simulation results indicate a high correlation between the simulated and calculated ISI (based on our proposed expression for the ISI as a function of time) during the whole deconvolution process for the high as well as for the low signal to noise ratio (SNR) condition. 展开更多
关键词 Non-Blind Adaptive Equalizers Non-Blind Adaptive Deconvolution acquisition Time Convergence Time
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