Implementation of a Multipurpose CANSAT Development Platform

Authors

  • Leonardo Agustín Anchino UTN FRSFCO
  • Andrés Fernando Torti UTN FRSFCO
  • Emmanuel Mario Dovis Universidad Tecnológica Nacional Facultad Regional San Francisco
  • Emanuel Bernardi UTN FRSFCO
  • Rodolfo Podadera UTN FRSFCO

DOI:

https://doi.org/10.37537/rev.elektron.3.2.93.2019

Keywords:

Educación, nanosatélite, electrónica, firmware, tecnologías espaciales

Abstract

This article describes the technical and procedural aspects involved in the implementation of a non-orbital CanSat type nanosatellite. This device integrates mechanical, electronic components and software elements, specifically developed locally to promote scientific-technological dissemination, and the awakening of scientific vocations. Finally, it is important to note that this platform will be used as a development tool in the teaching of space technologies.

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Author Biography

  • Emmanuel Mario Dovis, Universidad Tecnológica Nacional Facultad Regional San Francisco

    Ingeniero Electrónico. Docente e investigador de la UTN Facultad Regional San Francisco.

References

UTN-BA. Esfuerzos en todo el paı́s para promover el ingreso a la UTN. [Online]. Available: https://www.frba.utn.edu.ar/esfuerzos-en-todo-el-pais-para-promover-el-ingreso-a-la-utn/

ITBA. Apostar a las ingenierı́as, las carreras del futuro. [Online]. Available: https://www.itba.edu.ar/la-universidad/prensa/apostar-a-las-ingenierias-las-carreras-del-futuro/

L. Anchino, A. Torti, M. Miretti, E. Bernardi, G. Peretti, and R. Podadera, “Desarrollo de un dispositivo CANSAT para fomentar el acceso a las tecnologı́as espaciales,” in WICC2019. San Juan, Argentina: Red de Universidades Nacionales con Carreras de Informática (RedUNCI), 04 2019, pp. 971–974.

L. Anchino and A. Torti, “Desarrollo de satélite cansat para utilizar como plataforma educativa y fomentar el interés en ingenierı́as,” Proyecto final de carrera, Universidad Tecnológica Nacional, 03 2019.

E. S. Agency. (2019, 02) What is a CanSat? [Online]. Available:https://www.esa.int/Education/CanSat/What is a CanSat

A. Torti, L. Anchino, L. Chiappero, M. Miretti, E. Dovis, E. Bernardi, J. Calloni, J. Tomé, M. A. Berón, and R. Podadera, “Estrategia de Divulgación y Enseñanza para Fomentar el Interés en las Tecnologı́as Espaciales,” in WICC2019. San Juan, Argentina: Red de Universidades Nacionales con Carreras de Informática (RedUNCI), 04 2019, pp. 601–604.

Y. Miyazaki and M. Yamazaki, “A practical education of space engineering by using Cansat and pico-satellite-Fruitful collaboration with UNISEC for success of student satellite program,” in 2013 6th International Conference on Recent Advances in Space Technologies (RAST). IEEE, 2013, pp. 1081–1086.

H. Aly, O. Sharkawy, A. Nabil, A. Yassin, M. Tarek, S. M. Amin, and M. K. Ibrahim, “Project-based space engineering education: Application to autonomous rover-back CanSat,” in 2013 6th International Conference on Recent Advances in Space Technologies (RAST). IEEE, 2013, pp. 1087–1092.

M. O. Kizilkaya, A. E. Oguz, and S. Soyer, “CanSat descent control system design and implementation,” in 2017 8th International Conference on Recent Advances in Space Technologies (RAST), June 2017, pp. 241–245.

I. Aliyev, C. A. Misirli, S. Ozturk, E. Mahmurat, A. Erkek, S. Kok, D. Kocyigit, S. Uzun, and R. A. Vural, “Design of solar powered subscale glider for CanSat competition,” in 2017 8th International Conference on Recent Advances in Space Technologies (RAST), June 2017, pp. 453–457.

M. E. Aydemir, R. C. Dursun, and M. Pehlevan, “Ground station design procedures for CANSAT,” in 2013 6th International Conference on Recent Advances in Space Technologies (RAST), June 2013, pp. 909–912.

U. Global. UNISEC Argentina Point of Contact. [Online]. Available: http://www.unisec-global.org/reyna.html

E. S. Agency, “2019 CanSat Guidelines,” 2019.

T. Instruments. Low-Power Sub-1 GHz RF Transceiver. [Online]. Available: http://www.ti.com/lit/ds/symlink/cc1101.pdf

M. Wireless. Maestro GPS receiver datasheet. [Online]. Available: http://update.maestro-wireless.com/GNSS/A2235-H/Maestro A2135 HA2235 H v11.pdf

A. Devices. Compact, 600 mA, 3 MHz, Step-Down DC-to-DC Converter. [Online]. Available: https://www.analog.com/media/en/technical-documentation/datasheets/ADP2108.pdf

T. Instruments. INA19x Current Shunt Monitor -16 V to +80 V Common-Mode Range. [Online]. Available: http://www.ti.com/lit/ds/symlink/ina193.pdf

T. Instruments. bq2409x 1A, Single-Input, Single Cell Li-Ion and Li-Pol Battery Charger. [Online]. Available: http://www.ti.com/lit/ds/symlink/bq24095.pdf

T. Instruments. bq27441-G1 System-Side Impedance Track TM Fuel Gauge. [Online]. Available: http://www.ti.com/lit/ds/symlink/bq27441-g1.pdf

Espressif. ESP32 Overview. [Online]. Available: https://www.espressif.com/en/products/hardware/esp32/overview

Microchip. PIC16(L)F18325/18345. [Online]. Available: http://ww1.microchip.com/downloads/en/devicedoc/40001795e.pdf

——. MCP1501T. [Online]. Available: http://ww1.microchip.com/downloads/en/DeviceDoc/20005474E.pdf

S. Labs. Si7006-A20. [Online]. Available: https://www.silabs.com/documents/public/data-sheets/Si7006-A20.pdf

T. Connectivity. 2 BAR INDUSTRIAL ALTIMETER SENSOR. [On-line]. Available: https://www.te.com/usa-en/product-MS563702BA03-50.html

Bosch. BMX055, Absolute Orientation Sensor. [Online]. Available: https://www.bosch-sensortec.com/bst/products/all products/bmx055

Microchip. USB-to-SPI Protocol Converter with GPIO (Master Mode). [Online]. Available: http://ww1.microchip.com/downloads/en/devicedoc/22288a.pdf

Digi. Api frame specifications. [Online]. Available: https://www.digi.com/

L. Anchino and A. Torti. Plataforma de divulgación CANSAT (AT-SAT). [Online]. Available: https://github.com/dragondgold/AtSat

Published

2019-12-15

Issue

Section

Computer Networks and Informatics

How to Cite

[1]
L. A. Anchino, A. F. Torti, E. M. Dovis, E. Bernardi, and R. Podadera, “Implementation of a Multipurpose CANSAT Development Platform”, Elektron, vol. 3, no. 2, pp. 120–127, Dec. 2019, doi: 10.37537/rev.elektron.3.2.93.2019.