Май 2011 Архивы - CoLiTec
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Dear prospective partners,

We would like to introduce you the results of CoLiTec (CLT) software implementation and the manual.

Statistics MPC
Software of Automatic Detection of Asteroids and Comets CoLiTec (CLT).
CoLiTec (CLT) was used by Leonid Elenin in his discovery of C/2010 X1 (Elenin) comet 10.12.2010 and P/2011 NO1 (Elenin) comet 07.07.2011.
CoLiTec (CLT) was used by A50 and H15 observatories in their discovery of more than 1000 asteroids (from 1.12. 2010).
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Archives for Май 2011

The most prolific asteroid observation observatories in 2011 (by 17 may 2011)

 

Name

МРС-code

Number of measurements (number of objects)

Instruments

1

Mt. Lemmon Survey (USA)

G96

851320 (121597)

1.50-m f/2.0 reflector

2

Lincoln Laboratory ETS, (LINEAR) (USA)

704

827330 (61856)

1.0-m f/2.15 reflector

3

Catalina Sky Survey (USA)

703

762931 (75613)

0.68-m Schmidt

4

Steward Observatory, Kitt Peak (USA)

691

322451 (49966)

0.9-m f/3 reflector

5

PanSTARR-1, Haleakala (USA)

F51

298740 (64760)

1.8-m f/4.4 Ritchey-Chretien

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The method of CCD-frames’ stacking with signal’s accumulation from a faint asteroid with nonzero apparent motion on series of CCD-frames

V. E. SAVANEVICH, A. B. BRYUKHOVETSKIY, A. M. KOZHUKHOV, V. P. VLASENKO


The method of CCD-frames’ stacking with signal’s accumulation from a faint asteroid with nonzero apparent motion on series of CCD-frames / V. E. Savanevich, A. B. Bryukhovetskiy, A. M. Kozhukhov, V P. Vlasenko

The worked out method represents CCD-frames’ stacking with signal’s accumulation from a faint asteroid with nonzero apparent motion. This method is based on the CCD-frames’ stacking with a shift along the possible tracks of asteroid’s motion. Its special feature is an option of mutual fractional shift (in pixels) between stacking frames. A correct frames’ stacking with a mutual fractional shift is done through use of the areal approach suggested by authors. The present method is used by authors in development of automatic detection system for new and already known asteroids’ tracking.


Keywords: asteroid, accumulation of asteroid’s signal, CCD-frames’ stacking.


Estimation of asteroid’s equatorial coordinates according to its coordinates on CCD-frame

V. E. SAVANEVICH, A. B. BRYUKHOVETSKIY, A. M. KOZHUKHOV, E. N. DIKOV

Estimation of asteroid’s equatorial coordinates according to its coordinates on CCD-frame / V. E. Savanevich, A. B. Bryukhovetskiy, A. M. Kozhukhov, E. N. Dikov // Syst. Obr. Inf.. 2010. N 6(87). P. 172—179.

The developed method represents estimation of asteroid’s equatorial coordinates according to its coordinates on CCD-frame. It considers dependence of errors in equatorial coordinates’ estimation upon apparent brightness of reference stars. The present method also implements uniform choice of reference stars on the image that helps to increase accuracy of estimation. The method’s efficiency has been proven through experimental researches on the natural data. Its precision considerations have been preliminary defined. The present method is used by authors in development of automatic detection system for new and already known asteroids’ tracking.


Keywords: asteroid, estimation of equatorial coordinates, CCD-frame.


Estimation of asteroid’s apparent brightness by the amplitude of its signal on CCD-frame

V. E. SAVANEVICH, A. B. BRYUKHOVETSKIY, A. M. KOZHUKHOV, V. P. VLASENKO


Estimation of asteroid’s apparent brightness by the amplitude of its signal on CCD-frame / V. E. Savanevich, A. B. Bryukhovetskiy, A. M. Kozhukhov, V P. Vlasenko // Syst. Upr. Nav. ta. Zvy’azku, 2010. N 3(15). P. 46—50.

The developed method represents estimation of asteroid’s apparent brightness by the amplitude of its signal on CCD-frame, based on two-ranges piecewise linear model of photometric solution. The method’s efficiency has been proven through experimental researches on the natural data. Its precision considerations have been preliminary defined. The present method is used by authors in development of automatic detection system for new and already known asteroids’ tracking.


Keywords: asteroid, estimation of apparent brightness, photometry, CCD-frame.

Estimation of asteroid’s coordinates on the discrete image

V. E. SAVANEVICH, A. B. BRYUKHOVETSKIY, A. M. KOZHUKHOV, E. N. DIKOV


Estimation of asteroid’s coordinates on the discrete image/ V. E. Savanevich, A. B. Bryukhovetskiy, A. M. Kozhukhov, E. N. Dikov // Radioengineering. All-Urk. Sci. Interdep. Mag. 2010. N 162. P. 78—86.

The described method represents estimation of asteroid’s coordinates on the discrete image, considering estimation of continuous parameters (asteroids’ coordinates) on the discrete image (set of CCD-matrix pixels’ potentials) and the fact that residual noise photons can be unevenly distributed on an object’s image. The method’s efficiency has been proven through experimental researches on the natural data. Its precision considerations have been preliminary defined. The present method is used by authors in development of automatic detection system for new and already known asteroids’ tracking.

Preselection of celestial objects’ signals on CCD-image

V. E. SAVANEVICH, A. B. BRYUKHOVETSKIY, A. M. KOZHUKHOV,A S. SYROVATKA


Preselection of celestial objects’ signals on CCD-image/V. E. Savanevich, A. M. Kozhukhov, A. B. Bryukhovetskiy // Systems of arms and military equipment. – Kharkiv: KHUAF, 2011. Vol. 2(26). P. 169—173.

The developed method represents preselection of celestial objects’ signals during asteroids’ detection. It is based on comparison of thresholds with spatial convolution values of the received radiation around the image’s peak and the form of the expected signal. The new suggested model permits distribution of spatial convolution values. It represents a mixture of normal distribution law and “tail”, situated in area of large values of spatial convolution. Approximate selection of a normal (“base-line”) component of distribution of spatial convolution values through the present method is used to determine rejection threshold for image’s peaks that have no celestial objects’ signals around. The present method is used by authors in development of automatic detection system for new and already known asteroids’ tracking.


CoLiTec
Interesting objects discovered by CoLiTec (CLT)

Comets
C/2010 X1 (Elenin) (MPEC 2010-X101).
P/2011 NO1 (MPEC 2011-O10).
C/2012 S1 (ISON) MPEC 2012-S63
NEO
2011 QY37 (MPEC 2011-Q51).
2012 RQ16 (MPEC 2012-S16).

Other unusual asteroids
2011 HY52 (MPEC 2011-J02).
2011 QD23 (MPEC 2011-Q39).
2011 RC17 (MPEC 2011-W37).

Jupiter Trojans:
2011 QJ9, 2011 QQ47, 2011 YA3, 2012 AF1, 2012 BB27, 2012 RZ4, 2012 RM6, 2012 SD3,
2012 SN9, 2012 SC50, 2013 BP2.

Presentation

Deletion of motionless object