Digital camera design

Stars have been treated as a celestial reference in navigation since ancient time. The constellation scattered over the sky tells lot information to us if it is properly analysed. This concept has been adopted in star camera which is mounted on spacecraft for executing attitude determination in out...

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Main Author: Teh, Sow Boon.
Other Authors: Chua Tai Wei
Format: Final Year Project
Language:English
Published: 2009
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Online Access:http://hdl.handle.net/10356/17328
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-173282023-07-07T16:11:15Z Digital camera design Teh, Sow Boon. Chua Tai Wei School of Electrical and Electronic Engineering Satellite Engineering Centre George Chung Kit Chen DRNTU::Engineering::Electrical and electronic engineering::Optics, optoelectronics, photonics Stars have been treated as a celestial reference in navigation since ancient time. The constellation scattered over the sky tells lot information to us if it is properly analysed. This concept has been adopted in star camera which is mounted on spacecraft for executing attitude determination in outer space. Star camera captures the image of stars which fall within its field of view. Subsequently, this image will be matched by performing star pattern recognition with the star catalogues stored in the firmware. Lastly, the attitude information of the spacecraft can be computed from the matched star pattern. In short, star camera is just like a usual digital camera with extra value-added function in attitude determination. Digital camera has been evolved through different stages since its invention. Nowadays, CMOS technology is under a well-controlled stable process which eventually emerges to be the baseline process for almost all logic and microprocessors. This has paved the way for Active-Pixel-Sensor (APS) imager to be fabricated on much cheaper and more available manufacturing lines. Hence, APS imager was opted as the candidate image sensor in this project due to its low-power consumption, low cost, low weight and small dimension nature. In addition, these prominent features are fulfilling the trend of microsatellite towards the lighter instrumentation and less power consumption. The main task in this project is to design an optical system for the selected APS imager i.e. OV3630 image sensor from OmniVision Technologies. The aim of the design is to design a high speed lens with desirable high optical performances. ZEMAX optical system design program has been used to design, optimise, and evaluate the desired lens system. A study on OV3630 image sensor has been carried out and summarised so that it provides a platform for future interface-designs. Besides that, the possible attainable Star Magnitude of the proposed lens design has been calculated based on the sensor’s sensitivity. By referring to the calculated Star Magnitude, we are able to predict the limit of the dimmest star which can be captured by the star camera. Bachelor of Engineering 2009-06-05T08:23:08Z 2009-06-05T08:23:08Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/17328 en Nanyang Technological University 171 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Electrical and electronic engineering::Optics, optoelectronics, photonics
spellingShingle DRNTU::Engineering::Electrical and electronic engineering::Optics, optoelectronics, photonics
Teh, Sow Boon.
Digital camera design
description Stars have been treated as a celestial reference in navigation since ancient time. The constellation scattered over the sky tells lot information to us if it is properly analysed. This concept has been adopted in star camera which is mounted on spacecraft for executing attitude determination in outer space. Star camera captures the image of stars which fall within its field of view. Subsequently, this image will be matched by performing star pattern recognition with the star catalogues stored in the firmware. Lastly, the attitude information of the spacecraft can be computed from the matched star pattern. In short, star camera is just like a usual digital camera with extra value-added function in attitude determination. Digital camera has been evolved through different stages since its invention. Nowadays, CMOS technology is under a well-controlled stable process which eventually emerges to be the baseline process for almost all logic and microprocessors. This has paved the way for Active-Pixel-Sensor (APS) imager to be fabricated on much cheaper and more available manufacturing lines. Hence, APS imager was opted as the candidate image sensor in this project due to its low-power consumption, low cost, low weight and small dimension nature. In addition, these prominent features are fulfilling the trend of microsatellite towards the lighter instrumentation and less power consumption. The main task in this project is to design an optical system for the selected APS imager i.e. OV3630 image sensor from OmniVision Technologies. The aim of the design is to design a high speed lens with desirable high optical performances. ZEMAX optical system design program has been used to design, optimise, and evaluate the desired lens system. A study on OV3630 image sensor has been carried out and summarised so that it provides a platform for future interface-designs. Besides that, the possible attainable Star Magnitude of the proposed lens design has been calculated based on the sensor’s sensitivity. By referring to the calculated Star Magnitude, we are able to predict the limit of the dimmest star which can be captured by the star camera.
author2 Chua Tai Wei
author_facet Chua Tai Wei
Teh, Sow Boon.
format Final Year Project
author Teh, Sow Boon.
author_sort Teh, Sow Boon.
title Digital camera design
title_short Digital camera design
title_full Digital camera design
title_fullStr Digital camera design
title_full_unstemmed Digital camera design
title_sort digital camera design
publishDate 2009
url http://hdl.handle.net/10356/17328
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