Abstract
胡雪晴 HU Xueqing, Guang Jin, Shaoju Wang
Abstract
Authors
Institutions
Provenance
crossref
Confidence 100%
openalex
Confidence 95%
datacite
Confidence 0%
No local reference links have been materialized yet.
No local citing links have been materialized yet.
Unresolved referenced work
2002
Athermalization of a single-component lens with diffractive optics
10.1364/ao.32.002295 · 1993
Multilens system design with an athermal chart
10.1364/ao.33.008009 · 1994
Material problem in athermalization of optical systems
10.1117/1.601177 · 1997
Athermalization of IR optical systems[C]//Infrared optical design and fabrication: a critical review
1991
Athermalization of optical systems
10.1364/josa.38.000542 · 1948
Athermalization of optical instruments from the optomechanical viewpoint
1992
Lens mounting techniques
10.1117/12.935014 · 1983
Structural thermal optical performance (STOP) analysis and experimental verification of an hyperspectral imager for the HYPSO CubeSat
10.1016/j.optlaseng.2023.107919 · 2024
Thermoelastic evaluation of the payload module of the ARIEL mission
10.1007/s10686-021-09704-0 · 2022
Optical performance evaluation of the high spatial resolution imaging camera of BepiColombo space mission
10.1016/j.optlastec.2021.107172 · 2021
FEA based opto-mechanisms design and thermal analysis of a dynamic SFS with an ultra-long exit pupil distance
2023
Optimization thermal design method for space cameras based on thermo-optical analysis and Taguchi method
10.1117/1.oe.59.7.075101 · 2020
Thermal analysis and design of the aerial camera's primary optical system components
10.1016/j.applthermaleng.2012.01.015 · 2012
Optical-structural-thermal analysis of zoom infrared dual-band projection lens
2018
Opto-mechanical-thermal analysis of long-wave infrared meta/refractive optical systems
10.1016/j.optlaseng.2025.109445 · 2026
Unresolved referenced work
2008
Review of contact modelling in nonlinear finite element analysis
10.1016/j.matpr.2021.04.504 · 2021
Structural-Thermal-Optical Performance (STOP) analysis of a theoretical Newtonian telescope using the Ansys-Zemax-STAR package[C]//Optomechanical
2025
Athermal panoramic annular lens design with a thermal analysis method
10.1364/ao.507191 · 2023
A review on unmanned aerial vehicle remote sensing: platforms, sensors, data processing methods, and applications
10.3390/drones7060398 · 2023
Fusionrcnn: Lidar-camera fusion for two-stage 3d object detection
10.3390/rs15071839 · 2023
Design of airborne large aperture infrared optical system based on monocentric lens
10.3390/s22249907 · 2022
Opto-mechanical thermal integration analysis and optimization of KrF deep ultraviolet lithography projection lens
2024
Compact athermalized LWIR objective lens
10.1007/s12596-022-00892-2 · 2023
Three-shell-based lens barrel for the effective athermalization of an IR optical system
10.1364/ao.50.006206 · 2011
Unresolved referenced work
2014
Three-shell-based lens barrel for the effective athermalization of an IR optical system
10.1364/ao.50.006206 · doi-reference
Compact athermalized LWIR objective lens
10.1007/s12596-022-00892-2 · doi-reference
Design of airborne large aperture infrared optical system based on monocentric lens
10.3390/s22249907 · doi-reference
Fusionrcnn: Lidar-camera fusion for two-stage 3d object detection
10.3390/rs15071839 · doi-reference
A review on unmanned aerial vehicle remote sensing: platforms, sensors, data processing methods, and applications
10.3390/drones7060398 · doi-reference
Athermal panoramic annular lens design with a thermal analysis method
10.1364/ao.507191 · doi-reference
Review of contact modelling in nonlinear finite element analysis
10.1016/j.matpr.2021.04.504 · doi-reference
Opto-mechanical-thermal analysis of long-wave infrared meta/refractive optical systems
10.1016/j.optlaseng.2025.109445 · doi-reference
Thermal analysis and design of the aerial camera's primary optical system components
10.1016/j.applthermaleng.2012.01.015 · doi-reference
Optimization thermal design method for space cameras based on thermo-optical analysis and Taguchi method
10.1117/1.oe.59.7.075101 · doi-reference
Optical performance evaluation of the high spatial resolution imaging camera of BepiColombo space mission
10.1016/j.optlastec.2021.107172 · doi-reference
Thermoelastic evaluation of the payload module of the ARIEL mission
10.1007/s10686-021-09704-0 · doi-reference
Structural thermal optical performance (STOP) analysis and experimental verification of an hyperspectral imager for the HYPSO CubeSat
10.1016/j.optlaseng.2023.107919 · doi-reference
Lens mounting techniques
10.1117/12.935014 · doi-reference
Athermalization of optical systems
10.1364/josa.38.000542 · doi-reference
Material problem in athermalization of optical systems
10.1117/1.601177 · doi-reference
Multilens system design with an athermal chart
10.1364/ao.33.008009 · doi-reference
Athermalization of a single-component lens with diffractive optics
10.1364/ao.32.002295 · doi-reference