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Inertial measurement using atom interferometry 被引量:1
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作者 JIA Aiai YANG Jun +4 位作者 YAN Shuhua LUO Yukun HU Qingqing WEI Chunhua LI Zehuan 《Instrumentation》 2015年第4期56-66,共11页
The recent advances of atom interferometer and its application in precision inertial measurement are review ed. The principle,characteristics and implementation of atom interferometer are introduced and it can be used... The recent advances of atom interferometer and its application in precision inertial measurement are review ed. The principle,characteristics and implementation of atom interferometer are introduced and it can be used to measure gravitational acceleration,gravity gradient and rotation for its high sensitivity. We also present the principle,structure and new progress of gravimeter,gravity gradiometer and gyroscope based on atom interferometer. 展开更多
关键词 ATOM interferometer INERTIAL MEASUREMENT GRAVITY rotation
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Simultaneous measurement of vibration amplitude and rotation angle based on a single-channel laser self-mixing interferometer 被引量:2
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作者 孙悟 刘建国 +3 位作者 桂华侨 鲁岸立 王焕钦 陆亦怀 《Chinese Optics Letters》 SCIE EI CAS CSCD 2016年第2期23-26,共4页
Based on a single-channel laser self-mixing interferometcr, we present a new silnultaneous measurement of the vibration amplitude and tile rotation angle of objects that both affect the power spectrum containing two p... Based on a single-channel laser self-mixing interferometcr, we present a new silnultaneous measurement of the vibration amplitude and tile rotation angle of objects that both affect the power spectrum containing two peaks of the interferometer signals. The fitted results indicate that the curve of the peak frequency versus the vibration amplitude follows a linear distribution, and the curve of the difference of the two-peak power values versus the angle follows a Gaussian distribution. A vibration amplitude with an error less than 3.0% and a rotation angle with an error less than 11.7% are calculated from the fitted results. 展开更多
关键词 Simultaneous measurement of vibration amplitude and rotation angle based on a single-channel laser self-mixing interferometer LSM
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一种高速切换的10×2射频开关矩阵的设计 被引量:2
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作者 李夏琴 《电子设计工程》 2018年第10期68-73,78,共7页
基于实现旋转干涉仪模糊相位差切换阵列定位不同干涉仪之间相位差快速累积的目的,设计了一种高速切换的10×2射频开关矩阵。开关矩阵采用高速切换开关单元和周期高速切换控制指令的方法,验证了单星旋转干涉仪定位在不同频段的定位... 基于实现旋转干涉仪模糊相位差切换阵列定位不同干涉仪之间相位差快速累积的目的,设计了一种高速切换的10×2射频开关矩阵。开关矩阵采用高速切换开关单元和周期高速切换控制指令的方法,验证了单星旋转干涉仪定位在不同频段的定位精度。开关矩阵以PIN开关为基本单元,并从工程应用角度详细分析设计了矩阵的开关时间、隔离度和线性度等影响定位精度的关键指标。通过载荷系统的外场挂飞试验,开关矩阵各项射频指标和高速切换功能可靠稳定,满足系统定位使用需求,为后续快响侦察卫星载荷的研究提供了有力依据。 展开更多
关键词 旋转干涉仪 高速切换 射频开关矩阵 PIN开关
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法拉第旋光镜旋转角和工作波长对单模光纤迈克耳孙干涉仪性能的影响 被引量:7
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作者 王建飞 王潇 +1 位作者 罗洪 孟洲 《中国激光》 EI CAS CSCD 北大核心 2010年第4期1042-1046,共5页
偏振诱导信号衰落现象的抑制是干涉型光纤传感系统的关键技术之一。针对法拉第旋光镜(FRM)法抑制偏振诱导信号衰落技术进行了具体深入的研究。使用琼斯矩阵法对FRM单模光纤迈克耳孙干涉仪进行了理论分析和数值仿真,得出当FRM旋转角度偏... 偏振诱导信号衰落现象的抑制是干涉型光纤传感系统的关键技术之一。针对法拉第旋光镜(FRM)法抑制偏振诱导信号衰落技术进行了具体深入的研究。使用琼斯矩阵法对FRM单模光纤迈克耳孙干涉仪进行了理论分析和数值仿真,得出当FRM旋转角度偏差不大于6°时,可视度保持在0.9以上;分析了工作波长变化对FRM单模光纤迈克耳孙干涉仪干涉性能的影响,当入射光波长处于FRM中心波长±71 nm范围内时,光纤干涉仪可视度达到0.9以上。实验结果表明,当入射光波长处于1495.4~1606.7 nm范围内时,可得到可视度接近于1的稳定信号输出,干涉性能优良。 展开更多
关键词 光通信 法拉第旋光镜 迈克耳孙干涉仪 琼斯矩阵 偏振衰落
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基于旋转法的干涉仪系统误差标定 被引量:6
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作者 张建锋 曹学东 +2 位作者 景洪伟 吴时彬 阴旭 《光电工程》 CAS CSCD 北大核心 2011年第12期69-74,共6页
针对干涉仪高精度检测的需求,本文提出了旋转法标定干涉仪系统误差,实现绝对检测,从而提高检测精度。该方法根据Zernike多项式的性质,可以通过N次平分旋转和一次旋转法两种方法实现。本文对这两种方法分别做了详细的理论推导,并且给出... 针对干涉仪高精度检测的需求,本文提出了旋转法标定干涉仪系统误差,实现绝对检测,从而提高检测精度。该方法根据Zernike多项式的性质,可以通过N次平分旋转和一次旋转法两种方法实现。本文对这两种方法分别做了详细的理论推导,并且给出具体实验结果与误差分析。实验结果表明,两种方法的测量结果基本一致,差值的PV值为0.006λ,RMS值为0.001λ。误差分析结果表明,一次旋转法的旋转误差小于N次平分法,因此一次旋转法是一种精度更高的方法。 展开更多
关键词 光学检测 旋转 干涉仪系统误差 ZERNIKE多项式 绝对标定
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白天大气测温的转动拉曼激光雷达分光系统 被引量:2
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作者 史晓丁 张艳 +1 位作者 侯天晋 周鼎富 《激光与红外》 CAS CSCD 北大核心 2012年第5期499-504,共6页
大气测温转动拉曼激光雷达通常采用双光栅单色仪来分离得到拉曼散射信号谱线,然而这种结构存在通带较宽的缺点,以致白天工作时输出信号混合了较强的天空背景干扰,无法准确测量大气温度。Fabry-Perot标准具具有滤波带宽窄、带外抑制比高... 大气测温转动拉曼激光雷达通常采用双光栅单色仪来分离得到拉曼散射信号谱线,然而这种结构存在通带较宽的缺点,以致白天工作时输出信号混合了较强的天空背景干扰,无法准确测量大气温度。Fabry-Perot标准具具有滤波带宽窄、带外抑制比高,以及透射率呈周期性的特点,在光栅单色仪前插入Fabry-Perot标准具,能够有效扣除背景光干扰,同时将氧气的拉曼散射谱线滤除,从而提高了输出拉曼谱线的纯度和输出信号的信噪比,最终可提高温度反演精度并实现日光环境下工作。 展开更多
关键词 激光雷达 转动拉曼散射 大气温度测量 FABRY-PEROT标准具 光栅单色仪
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Recent Progress of the HL-2A Multi-Channel HCOOH Laser Interferometer/Polarimeter
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作者 李永高 周艳 +3 位作者 邓中朝 李远 易江 王浩西 《Plasma Science and Technology》 SCIE EI CAS CSCD 2015年第5期430-434,共5页
A multichannel methanoic acid (HCOOH, λ=432.5 μm) laser interferometer/polarimeter is being developed from the previous eight-channel hydrogen cyanide (HCN, λ=337 μm) laser interferometer in the HL-2A tokamak.... A multichannel methanoic acid (HCOOH, λ=432.5 μm) laser interferometer/polarimeter is being developed from the previous eight-channel hydrogen cyanide (HCN, λ=337 μm) laser interferometer in the HL-2A tokamak. A conventional Michelson-type interometer is used for the electron density measurement, and a Dodel-Kunz-type polarimeter is used for the Faraday rotation effect measurement, respectively. Each HCOOH laser can produce a linearly polarized radiation at a power lever of -30 mW, and a power stability 〈10% in 50 rain. A beam waist (diameter d0 ≈12.0 mm, about 200 mm away from the outlet) is finally determined through a chopping modulation technique. The latest optical layout of the interferometer/polarimeter has been finished, and the hardware data processing system based on the fast Fourier transform phase- comparator technique is being explored. In order to demonstrate the feasibility of the diagnostic scheme, two associated bench simulation experiments were carried out in the laboratory, in which the plasma was simulated by a piece of polytetrafluoroethene plate, and the Faraday rotation effect was simulated by a rotating half-wave plate. Simulation results agreed well with the initial experimental conditions. At present, the HCOOH laser interferometer/polarimeter system is being assembled on HL-2A, and is planned to be applied in the 2014-2015 experimental campaign. 展开更多
关键词 HCOOH laser interferometer/polarimeter PLASMA Faraday rotation effect simulation experiment HL-2A
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Real-Time Dynamic Spectrum Analysis for Plasma Electron Density and Faraday Rotation Angle Measurement on HL-2A
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作者 丁宝钢 吴军 +3 位作者 范伟伟 吴彤宇 周艳 阴泽杰 《Plasma Science and Technology》 SCIE EI CAS CSCD 2015年第12期1092-1096,共5页
Electron density and Faraday rotation angle are important physical parameters in nuclear fusion research.To measure them simultaneously,the three-wave polarimeter/interferometer diagnostic system is applied.Both the f... Electron density and Faraday rotation angle are important physical parameters in nuclear fusion research.To measure them simultaneously,the three-wave polarimeter/interferometer diagnostic system is applied.Both the final probe output signal and the reference signal contain three frequency components.The time-varying phase difference curve of each frequency component can be measured by the Real-time Dynamic Spectrum Analysis(RDSA)method based on Field-Programmable Gate Array(FPGA).The phase difference precision is better than 0.1° and the real-time feedback delay is less than 1 ms,which satisfy the requirements of HL-2A. 展开更多
关键词 Electron Spectrum Faraday rotation interferometer satisfy performing Angle instead rotating
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