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GlSch: Planificación de Observaciones en la red de Telescopios GLORIA

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GlSch: Planificación de Observaciones en la red de Telescopios GLORIA

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López Casado, C.; Pérez Del Pulgar Mancebo, CJ.; Muñoz Martínez, VF.; Castro Tirado, A. (2018). GlSch: Planificación de Observaciones en la red de Telescopios GLORIA. Revista Iberoamericana de Automática e Informática industrial. 15(3):339-350. https://doi.org/10.4995/riai.2018.8640

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/143254

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Título: GlSch: Planificación de Observaciones en la red de Telescopios GLORIA
Otro titulo: GlSch: Observation plan scheduler for the GLORIA telescope network
Autor: López Casado, Carmen Pérez del Pulgar Mancebo, Carlos Jesús Muñoz Martínez, Víctor Fernando Castro Tirado, Alberto
Fecha difusión:
Resumen:
[EN] This paper proposes the design and development of a telescope network scheduler for the GLORIA telescope network. This telescope network, which main objective is helping users to get involved in astronomy research, ...[+]


[ES] Este artículo propone el diseño y desarrollo de un planificador para la red de telescopios GLORIA. Esta red, cuyo principal objetivo es acercar los ciudadanos a la astronomía, está formada por 18 telescopios ubicados ...[+]
Palabras clave: Network , Telescopes , Scheduling algorithms , Fuzzy logic , Software , Red , Telescopios , Algoritmos de planificación , Lógica difusa
Derechos de uso: Reconocimiento - No comercial - Sin obra derivada (by-nc-nd)
Fuente:
Revista Iberoamericana de Automática e Informática industrial. (issn: 1697-7912 ) (eissn: 1697-7920 )
DOI: 10.4995/riai.2018.8640
Editorial:
Universitat Politècnica de València
Versión del editor: https://doi.org/10.4995/riai.2018.8640
Código del Proyecto:
info:eu-repo/grantAgreement/EC/FP7/283783/EU/GLObal Robotic telescopes Intelligent Array for e-Science/
Agradecimientos:
Este trabajo ha sido realizado parcialmente gracias al proyecto GLORIA. GLObal Robotic telescopes Intelligent Array for e-Science (GLORIA) es un proyecto financiado por la Unión Europea bajo el Séptimo Programa Marco ...[+]
Tipo: Artículo

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References

Andújar Márquez, J., Mateo Sanguino, T., 1 2010. Diseño de Laboratorios Virtuales y/o Remotos. Un Caso Práctico. Revista Iberoamericana de Automática e Informática Industrial RIAI 7 (1), 64-72. DOI:10.1016/S1697-7912(10)70009-1

Arregui, J. P., Tejo, J. A., Linares López, C., Borrajo, D., 2012. Steps towards and operational sensor network planning for space surveillance. In: Proceedings of the SpaceOps. DOI:10.2514/6.2012-1294728

Bakos, G., Gaspar, 2016. Finding and Characterizing a Large and Diverse Population of Transiting Exoplanets with HATSouth in Support of NASA Space Missions. NASA Proposal #16-XRP16-70. [+]
Andújar Márquez, J., Mateo Sanguino, T., 1 2010. Diseño de Laboratorios Virtuales y/o Remotos. Un Caso Práctico. Revista Iberoamericana de Automática e Informática Industrial RIAI 7 (1), 64-72. DOI:10.1016/S1697-7912(10)70009-1

Arregui, J. P., Tejo, J. A., Linares López, C., Borrajo, D., 2012. Steps towards and operational sensor network planning for space surveillance. In: Proceedings of the SpaceOps. DOI:10.2514/6.2012-1294728

Bakos, G., Gaspar, 2016. Finding and Characterizing a Large and Diverse Population of Transiting Exoplanets with HATSouth in Support of NASA Space Missions. NASA Proposal #16-XRP16-70.

Beskin, G., Bad'in, V., Biryukov, A., et al., 7 2005. FAVOR (FAst Variability Optical Registration) - A Two-telescope Complex for Detection and Investigation of Short Optical Transients. Il Nuovo Cimento, 751-754. DOI:10.1393/ncc/i2005-10146-9

Bigongiari, C., Consortium, C., 2016. The Cherenkov Telescope Array. Nuclear and Particle Physics Proceedings 279, 174-181. DOI:10.1016/j.nuclphysbps.2016.10.025

Boër, M., Klotz, A., Laugier, R., et al., 2017. TAROT: a network for space surveillance and tracking operations. 7th European Conference on Space Debris ESA/ESOC.

Castro-Tirado, A. J., Jelínek, M., Gorosabel, J., et al., 2012. Building the BOOTES world-wide Network of Robotic telescopes. Astronomical Society of India Conference Series, Vol. 7, 2012, p. 313-320 7, 313-320.

Castro-Tirado, A. J., Sánchez Moreno, F. M., Pérez del Pulgar, C., et al., 2014.The GLObal Robotic telescopes Intelligent Array for E-Science (GLORIA). Revista Mexicana de Astronomía y Astrofísica 45, 104-109.

Castro-Tirado, A. J., Soldán, J., Bernas, M., et al., 9 1999. The Burst Observerand Optical Transient Exploring System (BOOTES). Astronomy and Astrophysics Supplement Series 138 (3), 583-585. DOI:10.1051/aas:1999362

Delgado, F., Reuter, M. A., 7 2016. The LSST Scheduler from design to construction. SPIE Astronomical Telescopes+ Instrumentation, 991013.DOI:10.1117/12.2233630

Denny, R., 2011. A Web-Remote/Robotic/Scheduled Astronomical Data Acquisition System. In: Telescopes from Afar Conference. p. 47.

Ducci, L., Covino, S., Doroshenko, V., Mereghetti, S., Santangelo, A., Sasa-ki, M., 11 2016. Optical and near-infrared photometric monitoring of the transient X-ray binary A0538 with REM. Astronomy and Astrophysics 595,A103. DOI:10.1051/0004-6361/201629236

Falomo, R., Fantinel, D., Uslenghi, M., 9 2011. AETC: Advanced Exposure Time Calculator. In: Tescher, A. G. (Ed.), Applications of Digital Image Processing XXXIV. International Society for Optics and Photonics, pp.813523-. DOI:10.1117/12.913304

Gresham, K. C., Palma, C., Polsgrove, D. E., Chun, F. K., Della-Rose, D. J.,Tippets, R. D., 2016. Education and outreach using the falcon telescope network. Acta Astronautica 129, 130-134. DOI:10.1016/j.actaastro.2016.09.006

Hamuy, M., Pignata, G., Maza, J., et al., 2012. The CHilean Automatic Supernova sEarch. Memorie della Societa Astronomica Italiana 83, 388-392.

Jelínek, M., Castro-Tirado, A. J., Cunnie, R., et al., 2016. A decade of GRB follow-up by BOOTES in Spain (2003-2013). Advances in Astronomy.

Karpov, S., Beskin, G., Biryukov, A., et al., 2016. Mini-Mega-TORTORA wide-field monitoring system with sub-second temporal resolution: first year of operation. IV Workshop on Robotic Autonomous Observatories (Eds. María Dolores Caballero-García, Shasi B. Pandey, David Hiriart & AlbertoJ. Castro-Tirado) Revista Mexicana de Astronomía y Astroísica (Serie de Conferencias) Vol. 48, pp. 91-96 (2016) 48, 91-96.

Kubánek, P., 7 2016. Status, upgrades, and advances of RTS2: the open source astronomical observatory manager. In: Chiozzi, G., Guzman, J. C. (Eds.),SPIE Astronomical Telescopes+ Instrumentation. International Society for Optics and Photonics, p. 99132U.DOI:10.1117/12.2232555

Lampoudi, S., Saunders, E., Eastman, J., 2015. An integer linear programming solution to the telescope network scheduling problem. In: International Conference on Operations Research and Enterprise Systems.

Mankiewicz, L., Batsch, T., Castro-Tirado, A., et al., 2014. Pi of the Sky full system and the new telescope. III Workshop on Robotic Autonomous Observatories (Eds. Juan C. Tello, Alberto Riva, David Hiriart & Alberto J. Castro-Tirado) Revista Mexicana de Astronomía y Astrofísica (Serie de Conferenias) Vol. 45, pp. 7-11 (2014) 45, 7-11.

myweather2, 2017. Free weather API - XML weather and JSON weather feed for global locations. URL:http://www.myweather2.com

Nekola, M., Hudec, R., Jelínek, M., Kubánek, P., Štrobl, J., Polášek, C., 2010. BART: The Czech Autonomous Observatory. Advances in Astronomy 2010,1-5. DOI:10.1155/2010/103986

Ocaña, F., Ibarra, A., Racero, E., Montero, A., Doubek, J., Ruiz, V., 7 2016. First results of the Test-Bed Telescopes (TBT) project: Cebreros telescope commissioning. In: Hall, H. J., Gilmozzi, R., Marshall, H. K. (Eds.), SPIE Astronomical Telescopes+ Instrumentation. p. 990666. DOI:10.1117/12.2233142

Ottinger, J., Linwood, J., Minter, D., 2014. Beginning Hibernate 3rd, 3rd Edition. Apress Berkely, CA, USA.

Panetta, M. P., 2016. The EEE Project: An extended network of muon telescopes for the study of cosmic rays. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 824, 642-643. DOI:10.1016/j.nima.2015.10.073

Pickles, A., Hjelstrom, A., Boroson, T., et al., 8 2014. LCOGT network observatory operations. In: Peck, A. B., Benn, C. R., Seaman, R. L. (Eds.), SPIE Astronomical Telescopes+ Instrumentation. p. 914912. DOI:10.1117/12.2055215

Racero, E., Ocaña, F., Ponz, D., 2015. Towards an autonomous telescope system: the Test-Bed Telescope project. Highlights of Spanish Astrophysics, 828-833.

Saunders, E. S., Lampoudi, S., Lister, T. A., Norbury, M., Walker, Z., 8 2014. Novel scheduling approaches in the era of multi-telescope networks. In: Peck, A. B., Benn, C. R., Seaman, R. L. (Eds.), SPIE Astronomical Telescopes+ Instrumentation. p. 91490E. DOI:10.1117/12.2056642Sky-Map, 2017.

Sky-Map. URL:http://www.sky-map.org/

Solar, M., Michelon, P., Avarias, J., Garces, M., 2016. A scheduling model forastronomy. Astronomy and Computing 15, 90-104. DOI:10.1016/j.ascom.2016.02.005

Sosnowska, D., Ouadahi, A., Buchschacher, N., Weber, L., Pepe, F., 2014.Using Heuristic Algorithms to Optimize Observing Target Sequences. In: Astronomical Data Analysis Software and Systems XXIII. Vol. 485. p. 73.

Trillas, E., Eciolaza, L., 2015. Fuzzy Logic. Springer International Publishing.DOI:10.1007/978-3-319-14203-6

Volgenau, N., Boroson, T., 7 2016. Two years of LCOGT operations: the challenges of a global observatory. In: Peck, A. B., Seaman, R. L., Benn, C. R.(Eds.), SPIE Astronomical Telescopes+ Instrumentation. International Society for Optics and Photonics, p. 99101C. DOI:10.1117/12.2233830

Wang, F., Deng, H., Guo, L., Ji, K., 7 2010. A Survey on Scientific-Workflow Techniques for E-science in Astronomy. In: 2010 International Forum on In-formation Technology and Applications. IEEE, pp. 417-420. DOI:10.1109/IFITA.2010.210

Ye, Q.-Z., 2011. Forecasting Cloud Cover and Atmospheric Seeing for Astronomical Observing: Application and Evaluation of the Global Forecast System. Publications of the Astronomical Society of the Pacific 123, 113.

Zimmer, P., McGraw, J., Ackermann, M., 2015. Real-Time Optical Surveillance of LEO/MEO with Small Telescopes. Proceedings of the Advanced Maui Optical and Space Surveillance Technologies Conference, held in Wailea, Maui, Hawaii, September 15-18, 2014, Ed.: S. Ryan, The Maui Economic Development Board, id.103.

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