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模糊PID控制的光束指向稳定系统 被引量:2
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作者 任文佳 刘瑾 杨海马 《传感器与微系统》 CSCD 北大核心 2022年第7期85-88,共4页
激光束指向稳定技术通过控制激光束稳定输出,以实现对运动目标的瞄准,提高跟踪精度。基于单个快速反射镜(FSM)光束指向稳定原理,通过Zemax光学仿真,针对单个FSM光束指向不稳定的问题,建立基于双FSM的光束指向稳定模型,根据入射激光偏转... 激光束指向稳定技术通过控制激光束稳定输出,以实现对运动目标的瞄准,提高跟踪精度。基于单个快速反射镜(FSM)光束指向稳定原理,通过Zemax光学仿真,针对单个FSM光束指向不稳定的问题,建立基于双FSM的光束指向稳定模型,根据入射激光偏转角度的变化得到光斑移动轨迹;比较单、双FSM系统理论光束指向误差范围。为使FSM具有良好的跟踪能力,实现偏转角度的精确输出,基于模糊自适应比例-积分-微分(PID)控制进行仿真,通过与经典PID控制比较,模糊自适应PID控制器具有良好的鲁棒性,可以提高系统的动态性能和对目标的跟踪精度。 展开更多
关键词 激光稳定 快速反射镜 光束指向稳定 模糊比例-积分-微分控制 仿真
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18F-FLT PET/CT对食管鳞癌放化疗效果预测研究
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作者 任文佳 周敏 +7 位作者 吴式琇 陈俊强 陈亚楠 陈维维 艾沓杉 陈贇 蒋国梁 赵快乐 《中国癌症杂志》 CAS CSCD 北大核心 2019年第12期965-970,共6页
背景与目的:18F-FLT是一种细胞增殖的示踪剂。探索18F-FLT PET/CT对食管鳞癌根治性放(化)疗效果的预测价值。方法:对根治性放(化)疗的初治食管鳞癌患者,放疗前及放疗第4周行18F-FLT PET/CT扫描,记录原发灶的SUVmax-T、转移淋巴结的SUVma... 背景与目的:18F-FLT是一种细胞增殖的示踪剂。探索18F-FLT PET/CT对食管鳞癌根治性放(化)疗效果的预测价值。方法:对根治性放(化)疗的初治食管鳞癌患者,放疗前及放疗第4周行18F-FLT PET/CT扫描,记录原发灶的SUVmax-T、转移淋巴结的SUVmax-N等参数。随访患者总生存期(overall survival,OS)及无进展生存期(progressionfree survival,PFS),分析PET/CT参数与患者预后的关系。结果:共入组39例患者,25例完成2次PET/CT扫描。18F-FLT的SUVmax-T由基线6.63下降到1.22,淋巴结SUVmax-N由3.69下降到1.84,但下比例与生存率无关。18F-FLT PET/CT的基线SUVmax-N<5.00的患者,其OS明显高于SUVmax-N≥5.00的患者(P=0.002)。结论:对根治性放(化)疗食管鳞癌,治疗前的基线18F-FLT PET/CT的淋巴结SUVmax-N是一个较好的预测预后参数。放疗4周时,病灶在18F-FLT PET/CT扫描中的SUV值明显下降,但不能预测预后。 展开更多
关键词 18F-FLT PET/CT 食管鳞癌 放化疗 生存时间
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液滴撞击壁面铺展及换热过程数值模拟 被引量:3
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作者 刘联胜 任蕰佳 +2 位作者 田亮 刘轩臣 段润泽 《低温与超导》 CAS 北大核心 2021年第1期45-52,共8页
基于喷雾冷却时液滴撞击壁面现象,本文采用CLSVOF(coupled level set and volume of fluid)方法对不同工况下单液滴撞壁过程进行数值模拟,获得了单液滴撞击热壁面动态特性;分析了初始速度、液滴直径等初始参数对液滴撞壁后的动态铺展规... 基于喷雾冷却时液滴撞击壁面现象,本文采用CLSVOF(coupled level set and volume of fluid)方法对不同工况下单液滴撞壁过程进行数值模拟,获得了单液滴撞击热壁面动态特性;分析了初始速度、液滴直径等初始参数对液滴撞壁后的动态铺展规律以及壁面换热特性的影响规律,获得了上述参数变化时液滴铺展系数和热流密度的变化趋势;探讨了场协同效应、液滴内部气泡以及三线接触点对壁面换热的影响。碰壁现象的研究对于大型制冷机组室外机散热、高热流电子器件散热等领域优化与控制喷雾有重要意义。 展开更多
关键词 喷雾冷却 液滴碰壁 相变换热
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Self-Collimation for Two-Dimensional Micro-Angle Measurement in Space 被引量:1
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作者 ren wenjia LIU Jin +2 位作者 YANG Haima HUANG Bo JIAN Yumei 《Wuhan University Journal of Natural Sciences》 CAS CSCD 2021年第2期156-164,共9页
How to measure the two-dimensional attitude angle of space target and achieve stable tracking and aiming has become an important problem. The self-collimation is often measured via one-dimensional motion of the object... How to measure the two-dimensional attitude angle of space target and achieve stable tracking and aiming has become an important problem. The self-collimation is often measured via one-dimensional motion of the object in space. This paper proposes a micro-angle measurement system based on self-collimation to obtain the two-dimensional angle information of moving objects in space, and a thrice reflecting optical path structure is built to improve the compactness of the system. First, by establishing a posture angle measurement and decomposition model, the two-dimensional deflection angle value of the reflecting mirror is derived from the rotation angle equation;Second, the self-collimating measurement process is simulated to show the relationship between the reflecting mirror rotation angle and the imaging spot distortion of detector;Third, a two-dimensional micro-angle experimental platform is established based on the Position Sensitive Detector(PSD). Finally, nonlinear error of PSD is improved by the cubic spline interpolation method. The case results show a 15% reduction in the angle error. 展开更多
关键词 SELF-COLLIMATION micro-angle measurement Position Sensitive Detector(PSD) cubic spline interpolation
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Optimization of Surface Plasmon Resonance Sensor Based on Multilayer Film Structure 被引量:1
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作者 LIU Jin SHENG Xiang +1 位作者 HUANG Bo ren wenjia 《Wuhan University Journal of Natural Sciences》 CAS CSCD 2020年第4期352-358,共7页
A prism-excited multilayer film Surface Plasmon Resonance(SPR)sensing structure of graphene-silver-graphenemeasured mediums is proposed to solve the unstablility and oxidization problem of metallic silver films for SP... A prism-excited multilayer film Surface Plasmon Resonance(SPR)sensing structure of graphene-silver-graphenemeasured mediums is proposed to solve the unstablility and oxidization problem of metallic silver films for SPR sensors.By adding a graphene layer,the poor stability and the oxidization problem of silver film are solved.The electromagnetic field and reflection mechanism of the multilayer film structure are theoretically analyzed.The characteristics of the different metal materials for SPR,the distinct silver film thickness,and different graphene layers are studied through experiments to optimize the sensor design.Compared with the gold film sensor,the sensitivity of the multilayer film sensor with graphene layer is improved.The designed SPR sensor is used to detect a sucrose solution with a concentration of 0%-64%,and its refractive index is 1.33 to 1.45,linear correlation coefficient is 0.9984.Good resonance effect and sensing characteristics are thus obtained. 展开更多
关键词 surface plasmon resonance multilayer film CHARACTERISTICS
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