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The Pan-STARRS Moving Object Processing System

delete2013-04-01
delete141
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OA
AI
L
L. Denneau *
R
Robert Jedicke
T
T. Grav
M
Mikael Granvik
J
Jeremy Kubica
P
P. Vereš
R
R. J. Wainscoat
D
Daniel Chang
F
F. Pierfederici
N
N. Kaiser
K
Kenneth C. Chambers
J
J. N. Heasley
E
E. A. Magnier
P
P. A. Price
J
Jonathan A. Myers
J
Jan Kleyna
H
Henry H. Hsieh
D
Davide Farnocchia
C
Chris Waters
W
W. H. Sweeney
D
Denver Green
B
Bryce Bolin
W
W. S. Burgett
J
John Morgan
J
J. Tonry
K
K. W. Hodapp
S
S. Chastel
C
Chesley, Steve
A
A. Fitzsimmons
M
Matthew J. Holman
T
T. Spahr
D
D. J. Tholen
G
G. V. Williams
S
Shinsuke Abe
J
J. D. Armstrong
T
Terry Bressi
R
Robert R. Holmes
T
Tim Lister
M
M. Micheli
E
E. V. Ryan
W
W. H. Ryan
J
J. V. Scotti
DOI:10.1086/670337delete
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Abstract

Abstract

En 中文
We describe the Pan-STARRS Moving Object Processing System (MOPS), a modern software package that produces automatic asteroid discoveries and identifications from catalogs of transient detections from next-generation astronomical survey telescopes. MOPS achieves >99.5% efficiency in producing orbits from a synthetic but realistic population of asteroids whose measurements were simulated for a Pan-STARRS4-class telescope. Additionally, using a nonphysical grid population, we demonstrate that MOPS can detect populations of currently unknown objects such as interstellar asteroids. MOPS has been adapted successfully to the prototype Pan-STARRS1 telescope despite differences in expected false detection rates, fill-factor loss, and relatively sparse observing cadence compared to a hypothetical Pan-STARRS4 telescope and survey. MOPS remains highly efficient at detecting objects but drops to 80% efficiency at producing orbits. This loss is primarily due to configurable MOPS processing limits that are not yet tuned for the Pan-STARRS1 mission. The core MOPS software package is the product of more than 15 person-years of software development and incorporates countless additional years of effort in third-party software to perform lower-level functions such as spatial searching or orbit determination. We describe the high-level design of MOPS and essential subcomponents, the suitability of MOPS for other survey programs, and suggest a road map for future MOPS development.
Keywords:
ORBIT DETERMINATION
SIZE DISTRIBUTION
EARTH
IDENTIFICATION
CALIBRATION
ASTEROIDS

Journal

Publications of the Astronomical Society of the Pacific cover
Publications of the Astronomical Society of the Pacific
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7.7
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4.0K
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1.8W

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California Institute of Technology
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university of helsinki
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national aeronautics & space administration (nasa)
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University of Pisa
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