期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Technology of shipboard two-way microwave time synchronization
1
作者 付永杰 李东光 刘旭东 《Journal of Beijing Institute of Technology》 EI CAS 2014年第4期511-518,共8页
For the high precision time synchronization demand of ships, advantages and disadvantages of the present time transfer methods are analyzed, the two-way microwave time transfer (TWMTT) method is adopted to resolve t... For the high precision time synchronization demand of ships, advantages and disadvantages of the present time transfer methods are analyzed, the two-way microwave time transfer (TWMTT) method is adopted to resolve the time synchronization problem in the Naval Ship Formation. After expounding the principle and system composition of TWMTT method, the various factors influencing the synchronous precision are analyzed, such as time-interval measurement error, TWMTT equipment delay error, signal propagation error in air, and signal delay error caused by shipping. To improve the time synchronization precision, all the error sources above are deduced with mathematical measures to definite the critical one, and the signal processing measures such as Pseudo code spread spectrum time comparison signal generation technology, FFT fast acquisition technology and precise tracking technology are used into the modem which is the core equipment of the TWMTT. And, calibration method of TWMTT equipment delay are developed. Through theoretical a- nalysis and simulation verification, the precision of shipboard two-way microwave time synchroniza- tion can reach 1 ns. 展开更多
关键词 two-way microwave time transfer(TWMTT) time synchronization time delay error analysis
下载PDF
Photonic microwave true time delays for phased array antennas using a 49 GHz FSR integrated optical micro-comb source[Invited] 被引量:5
2
作者 XINGYUAN Xu JIAYANG Wu +6 位作者 THACH G.NGUYEN TANIA MOEIN SAI T.CHU BRENT E.LITTLE ROBERTO MORANDOTTI ARNAN MITCHELL DAVID J.Moss 《Photonics Research》 SCIE EI 2018年第5期I0055-I0061,共7页
We demonstrate significantly improved performance of a microwave true time delay line based on an integrated optical frequency comb source. The broadband micro-comb(over 100 nm wide) features a record low free spectra... We demonstrate significantly improved performance of a microwave true time delay line based on an integrated optical frequency comb source. The broadband micro-comb(over 100 nm wide) features a record low free spectral range(FSR) of 49 GHz, resulting in an unprecedented record high channel number(81 over the C band)—the highest number of channels for an integrated comb source used for microwave signal processing. We theoretically analyze the performance of a phased array antenna and show that this large channel count results in a high angular resolution and wide beam-steering tunable range. This demonstrates the feasibility of our approach as a competitive solution toward implementing integrated photonic true time delays in radar and communications systems. 展开更多
关键词 FSR Invited Photonic microwave true time delays for phased array antennas using a 49 GHz FSR integrated optical micro-comb source
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部