TY - JOUR
T1 - Advanced smart high ratio zoom system with global optimization
AU - Ding, Quanxin
AU - Liu, Hua
PY - 2008
Y1 - 2008
N2 - With an aim to achieve a breakthrough the choke point in research on system design, to achieve the transforming in multiple fields of view, the approaching to system efficacy limit in theory and improving smartness, pure diffractive optical system is chosen. The top idea and main strategy is developed. Some correlative model is established. In optimized design, global optimization algorithm is used to achieve wider spectrum range, multi field view, lower distortion and appropriate MTF. A kind of result works mainly in 3-5μm and 8-12μm with high ratio of more than 20:1 is evaluated. And this integrated multi-sensor electro-optical system satisfies the applied requirements o some criteria, such as Modulation Transfer Function (MTF), Spot Diagram (RMS) and Point Spread Function (PSF) etc., and achieves remarkable advantages in volume, weight, system efficiency and so on.
AB - With an aim to achieve a breakthrough the choke point in research on system design, to achieve the transforming in multiple fields of view, the approaching to system efficacy limit in theory and improving smartness, pure diffractive optical system is chosen. The top idea and main strategy is developed. Some correlative model is established. In optimized design, global optimization algorithm is used to achieve wider spectrum range, multi field view, lower distortion and appropriate MTF. A kind of result works mainly in 3-5μm and 8-12μm with high ratio of more than 20:1 is evaluated. And this integrated multi-sensor electro-optical system satisfies the applied requirements o some criteria, such as Modulation Transfer Function (MTF), Spot Diagram (RMS) and Point Spread Function (PSF) etc., and achieves remarkable advantages in volume, weight, system efficiency and so on.
KW - Global optimization
KW - Multi-sensor integration
KW - Top design
UR - http://www.scopus.com/inward/record.url?scp=38849133454&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:38849133454
SN - 1013-9826
VL - 364-366 I
SP - 527
EP - 532
JO - Key Engineering Materials
JF - Key Engineering Materials
ER -