Multi-Site Simultaneous Time-Resolved Photometry with a Low Cost Electro-Optics System
Sunlight reflected off of resident space objects can be used as an optical signal for astrometric orbit determination and for deducing geometric information about the object. With the increasing population of small satellites and debris in low Earth orbit, photometry is a powerful tool in operationa...
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Online Access: | http://www.mdpi.com/1424-8220/17/6/1239 |
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doaj-f1f7886c9a7a47d1acbb26770aff35c52020-11-24T21:41:38ZengMDPI AGSensors1424-82202017-05-01176123910.3390/s17061239s17061239Multi-Site Simultaneous Time-Resolved Photometry with a Low Cost Electro-Optics SystemForrest Gasdia0Aroh Barjatya1Sergei Bilardi2Space and Atmospheric Instrumentation Lab, Center for Space and Atmospheric Research, Embry-Riddle Aeronautical University, Daytona Beach, FL 32114, USASpace and Atmospheric Instrumentation Lab, Center for Space and Atmospheric Research, Embry-Riddle Aeronautical University, Daytona Beach, FL 32114, USASpace and Atmospheric Instrumentation Lab, Center for Space and Atmospheric Research, Embry-Riddle Aeronautical University, Daytona Beach, FL 32114, USASunlight reflected off of resident space objects can be used as an optical signal for astrometric orbit determination and for deducing geometric information about the object. With the increasing population of small satellites and debris in low Earth orbit, photometry is a powerful tool in operational support of space missions, whether for anomaly resolution or object identification. To accurately determine size, shape, spin rate, status of deployables, or attitude information of an unresolved resident space object, multi-hertz sample rate photometry is required to capture the relatively rapid changes in brightness that these objects can exhibit. OSCOM, which stands for Optical tracking and Spectral characterization of CubeSats for Operational Missions, is a low cost and portable telescope system capable of time-resolved small satellite photometry, and is field deployable on short notice for simultaneous observation from multiple sites. We present the electro-optical design principles behind OSCOM and light curves of the 1.5 U DICE-2 CubeSat and simultaneous observations of the main body of the ASTRO-H satellite after its fragmentation event.http://www.mdpi.com/1424-8220/17/6/1239small telescopesphotometrysmall satellitesunresolved object characterizationmulti-site observationspace situational awareness |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Forrest Gasdia Aroh Barjatya Sergei Bilardi |
spellingShingle |
Forrest Gasdia Aroh Barjatya Sergei Bilardi Multi-Site Simultaneous Time-Resolved Photometry with a Low Cost Electro-Optics System Sensors small telescopes photometry small satellites unresolved object characterization multi-site observation space situational awareness |
author_facet |
Forrest Gasdia Aroh Barjatya Sergei Bilardi |
author_sort |
Forrest Gasdia |
title |
Multi-Site Simultaneous Time-Resolved Photometry with a Low Cost Electro-Optics System |
title_short |
Multi-Site Simultaneous Time-Resolved Photometry with a Low Cost Electro-Optics System |
title_full |
Multi-Site Simultaneous Time-Resolved Photometry with a Low Cost Electro-Optics System |
title_fullStr |
Multi-Site Simultaneous Time-Resolved Photometry with a Low Cost Electro-Optics System |
title_full_unstemmed |
Multi-Site Simultaneous Time-Resolved Photometry with a Low Cost Electro-Optics System |
title_sort |
multi-site simultaneous time-resolved photometry with a low cost electro-optics system |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2017-05-01 |
description |
Sunlight reflected off of resident space objects can be used as an optical signal for astrometric orbit determination and for deducing geometric information about the object. With the increasing population of small satellites and debris in low Earth orbit, photometry is a powerful tool in operational support of space missions, whether for anomaly resolution or object identification. To accurately determine size, shape, spin rate, status of deployables, or attitude information of an unresolved resident space object, multi-hertz sample rate photometry is required to capture the relatively rapid changes in brightness that these objects can exhibit. OSCOM, which stands for Optical tracking and Spectral characterization of CubeSats for Operational Missions, is a low cost and portable telescope system capable of time-resolved small satellite photometry, and is field deployable on short notice for simultaneous observation from multiple sites. We present the electro-optical design principles behind OSCOM and light curves of the 1.5 U DICE-2 CubeSat and simultaneous observations of the main body of the ASTRO-H satellite after its fragmentation event. |
topic |
small telescopes photometry small satellites unresolved object characterization multi-site observation space situational awareness |
url |
http://www.mdpi.com/1424-8220/17/6/1239 |
work_keys_str_mv |
AT forrestgasdia multisitesimultaneoustimeresolvedphotometrywithalowcostelectroopticssystem AT arohbarjatya multisitesimultaneoustimeresolvedphotometrywithalowcostelectroopticssystem AT sergeibilardi multisitesimultaneoustimeresolvedphotometrywithalowcostelectroopticssystem |
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1725920838332448768 |