Investigation of Digital Sun Sensor Technology with an N-Shaped Slit Mask

Nowadays sun sensors are being more widely used in satellites to determine the sunray orientation, thus development of a new version of sun sensor with lighter mass, lower power consumption and smaller size it of considerable interest. This paper introduces such a novel digital sun sensor, which is...

Full description

Bibliographic Details
Main Authors: Zheng You, Min-Song Wei, Bin Li, Fei Xing
Format: Article
Language:English
Published: MDPI AG 2011-10-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/11/10/9764/
id doaj-9ae1461ba9b444b89dbba36255a0bf57
record_format Article
spelling doaj-9ae1461ba9b444b89dbba36255a0bf572020-11-25T00:56:47ZengMDPI AGSensors1424-82202011-10-0111109764977710.3390/s111009764Investigation of Digital Sun Sensor Technology with an N-Shaped Slit MaskZheng YouMin-Song WeiBin LiFei XingNowadays sun sensors are being more widely used in satellites to determine the sunray orientation, thus development of a new version of sun sensor with lighter mass, lower power consumption and smaller size it of considerable interest. This paper introduces such a novel digital sun sensor, which is composed of a micro-electro-mechanical system (MEMS) mask with an N-shaped slit as well as a single linear array charge-coupled device (CCD). The sun sensor can achieve the measurement of two-axis sunray angles according to the three sun spot images on the CCD formed by sun light illumination through the mask. Given the CCD glass layer, an iterative algorithm is established to correct the refraction error. Thus, system resolution, update rate and other characteristics are improved based on the model simulation and system design. The test of sun sensor prototype is carried out on a three-axis rotating platform with a sun simulator. The test results show that the field of view (FOV) is ±60° × ±60° and the accuracy is 0.08 degrees of arc (3σ) in the whole FOV. Since the power consumption of the prototype is only 300 mW and the update rate is 14 Hz, the novel digital sun sensor can be applied broadly in micro/nano-satellites, even pico-satellites.http://www.mdpi.com/1424-8220/11/10/9764/sun sensorN-shaped slitlinear CCDsimulationprototype design
collection DOAJ
language English
format Article
sources DOAJ
author Zheng You
Min-Song Wei
Bin Li
Fei Xing
spellingShingle Zheng You
Min-Song Wei
Bin Li
Fei Xing
Investigation of Digital Sun Sensor Technology with an N-Shaped Slit Mask
Sensors
sun sensor
N-shaped slit
linear CCD
simulation
prototype design
author_facet Zheng You
Min-Song Wei
Bin Li
Fei Xing
author_sort Zheng You
title Investigation of Digital Sun Sensor Technology with an N-Shaped Slit Mask
title_short Investigation of Digital Sun Sensor Technology with an N-Shaped Slit Mask
title_full Investigation of Digital Sun Sensor Technology with an N-Shaped Slit Mask
title_fullStr Investigation of Digital Sun Sensor Technology with an N-Shaped Slit Mask
title_full_unstemmed Investigation of Digital Sun Sensor Technology with an N-Shaped Slit Mask
title_sort investigation of digital sun sensor technology with an n-shaped slit mask
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2011-10-01
description Nowadays sun sensors are being more widely used in satellites to determine the sunray orientation, thus development of a new version of sun sensor with lighter mass, lower power consumption and smaller size it of considerable interest. This paper introduces such a novel digital sun sensor, which is composed of a micro-electro-mechanical system (MEMS) mask with an N-shaped slit as well as a single linear array charge-coupled device (CCD). The sun sensor can achieve the measurement of two-axis sunray angles according to the three sun spot images on the CCD formed by sun light illumination through the mask. Given the CCD glass layer, an iterative algorithm is established to correct the refraction error. Thus, system resolution, update rate and other characteristics are improved based on the model simulation and system design. The test of sun sensor prototype is carried out on a three-axis rotating platform with a sun simulator. The test results show that the field of view (FOV) is ±60° × ±60° and the accuracy is 0.08 degrees of arc (3σ) in the whole FOV. Since the power consumption of the prototype is only 300 mW and the update rate is 14 Hz, the novel digital sun sensor can be applied broadly in micro/nano-satellites, even pico-satellites.
topic sun sensor
N-shaped slit
linear CCD
simulation
prototype design
url http://www.mdpi.com/1424-8220/11/10/9764/
work_keys_str_mv AT zhengyou investigationofdigitalsunsensortechnologywithannshapedslitmask
AT minsongwei investigationofdigitalsunsensortechnologywithannshapedslitmask
AT binli investigationofdigitalsunsensortechnologywithannshapedslitmask
AT feixing investigationofdigitalsunsensortechnologywithannshapedslitmask
_version_ 1725225495367254016