Diseño de un sistema de monitoreo y riego inteligente para el sector agrícola con Arduino UNO

datacite.rightshttp://purl.org/coar/access_right/c_16ec
dc.contributor.advisorGonzález Olier, Camilo Andrés
dc.contributor.authorSánchez Britos, Javier Alfredo
dc.contributor.authorTobías Meza, Orlando Rafael
dc.date2027-30-12
dc.date.accessioned2024-05-08T23:12:02Z
dc.date.available2024-05-08T23:12:02Z
dc.date.issued2023
dc.description.abstractEl artículo describe un sistema automático de riego para semilleros agrícolas que busca reducir el esfuerzo humano en el riego de plantas. Utiliza un circuito de detección de humedad y sensores de temperatura, humedad y luz para optimizar el rendimiento agrícola. El sistema, controlado por Arduino UNO, permite un control conveniente de la cantidad de agua, asegurando un crecimiento óptimo de las plantas. Aunque el proyecto es estático y no posee movilidad, es capaz de regar automáticamente los cultivos según las condiciones del suelo, garantizando un uso eficiente del agua. Palabras clave: Arduino UNO, Regadora automática, Sensores para el ambiente, ahorro de agua, agricultura y silvicultura.spa
dc.description.abstractThe article describes an automatic irrigation system for agricultural seedbeds that seeks to reduce human effort in watering plants. It uses a humidity detection circuit and temperature, humidity and light sensors to optimize agricultural performance. The system, controlled by Arduino UNO, allows convenient control of the amount of water, ensuring optimal plant growth. Although the project is static and does not have mobility, it is capable of automatically watering crops according to soil conditions, guaranteeing efficient use of water. Keywords: Arduino UNO, Automatic watering machine, Sensors for the environment, water saving, agriculture and forestry.eng
dc.identifier.urihttps://hdl.handle.net/20.500.12442/14617
dc.language.isospa
dc.publisherEdiciones Universidad Simón Bolívar
dc.publisherFacultad de Ingenieríasspa
dc.rights.accessrightsinfo:eu-repo/semantics/restrictedAccess
dc.subjectSistema de riego automáticospa
dc.subjectArduino UNOspa
dc.subjectAgriculturaspa
dc.subjectTinkerCADeng
dc.subjectONSHAPEeng
dc.subjectAutomatic irrigation systemeng
dc.subjectAgricultureeng
dc.titleDiseño de un sistema de monitoreo y riego inteligente para el sector agrícola con Arduino UNOspa
dc.title.translatedDesign of an intelligent monitoring and irrigation system for the agricultural sector with Arduino UNOeng
dc.type.driverinfo:eu-repo/semantics/bachelorThesis
dc.type.spaTrabajo de grado - pregrado
dcterms.referencesBin, L. (2019). Automatic watering and fertilizing machine. bluelab. Obtenido de https://typeset.io/papers/automatic-watering-and-fertilizing-machine-2b3ait7a0feng
dcterms.referencesBing, T. (2018). Rotable agricultural sprinkling irrigation device. agri expo. Obtenido de https://typeset.io/papers/rotatable-agricultural-sprinkling-irrigation-device-9ics869c9xeng
dcterms.referencesCailing, Z. (2018). Agricultural watering machine. gengze. Obtenido de https://typeset.io/papers/agricultural-watering-machine-1p9yp6gy1geng
dcterms.referencesDiwen, W. (2017). Automatic watering system. gardena. Obtenido de https://typeset.io/papers/automatic-watering-system-3w8obzxptveng
dcterms.referencesFan Linan, W. G. (2018). 5-in-1 Automatic Agriculture Machine. IJRASETPublications. Obtenido de https://typeset.io/papers/5-in-1-automatic-agriculture-machine-2jajzb60eng
dcterms.referencesG. M. Barbade, M. M. (2021). Automatic Sprinkler System using Arduino. Indian Journal of Microprocessors and Microcontroller (IJMM). Obtenido de https://typeset.io/papers/automatic-sprinkler-system-using-arduino-2ooibb7dhfeng
dcterms.referencesHongwen, C. (2018). Automatic gardening sprinkler. gardena. Obtenido de https://typeset.io/papers/automatic-gardening-sprinkler-2sp3n7hdytspa
dcterms.referencesIman Setiawan, J. J. (2022). Automatic Plant Watering System for Local Red Onion Palu using Arduino. Jurnal Online Informatika. Obtenido de https://typeset.io/papers/automatic-plant-watering-system-for-local-red-onion-palu-2cuqpqm4eng
dcterms.referencesIpin Prasojo, A. M. (2020). Design of Automatic Watering System Based on Arduino. Journal of robotics and control (JRC). Obtenido de https://typeset.io/papers/design-of-automatic-watering-system-based-on-arduino-4emcn4lfodeng
dcterms.referencesKulkarni, A. (2021). Lorawan Based Smart Agriculture, Remote Sensing and Auto Watering System. International Journal for Research in Applied Science and Engineering Technology (International Journal for Research in Applied Science and Engineering Technology (IJRASET)). Obtenido de https://typeset.io/papers/lorawan-based-smart-agriculture-remote-sensing-and-auto-1cq970m50zeng
dcterms.referencesM. Udin Harun Al Rasyid, A. S. (2020). Fuzzy Logic for Automatic Watering System of Smart Agriculture with IoT. 2020 International Conference on Applied Science and Technology (iCAST). Obtenido de https://typeset.io/papers/fuzzy-logic-for-automatic-watering-system-of-smart-1v1t2ayu8jeng
dcterms.referencesMaiskar, S. (2022). Controlling of agriculture motor with water level using GSM and Arduino Nano. International Journal For Science Technology And Engineering. Obtenido de https://typeset.io/papers/controlling-of-agriculture-motor-with-water-level-using-gsm-w4x1m5mdeng
dcterms.referencesMun Mi Na, P. D. (2019). Agriculture sprinkler for pest preventing and watering. vikaspedia. Obtenido de https://typeset.io/papers/agriculture-sprinkler-for-pest-preventing-and-watering-2advu1wbxceng
dcterms.referencesN. Revathy, T. G. (2022). IOT based Agriculture Monitoring System using Arduino UNO. 2022 International Conference on Computer Communication and Informatics (ICCCI). Obtenido de https://typeset.io/papers/iot-based-agriculture-monitoring-system-using-arduino-uno-3q86jhtxeng
dcterms.referencesNeha Singh, S. S. (2020). Arduino based automatic plant watering/irrigation system. International Journal of Engineering Applied Sciences and Technology. Obtenido de https://typeset.io/papers/arduino-based-automatic-plant-watering-irrigation-system-d60ugw32coeng
dcterms.referencesP Vaishnavi, Y. L. (2022). Automatic Watering System using Soil Moisture Sensor and RTC timer with Arduino. International Journal of Advanced Research in Science, Communication and Technology. Obtenido de https://typeset.io/papers/automatic-watering-system-using-soil-moisture-sensor-and-rtc-2h7x3hg0eng
dcterms.referencesRatika Sekar Ajeng Ananingtyas, R. E. (2023). Design of Automatic Watering System Prototype with Arduino-Based Soil Moisture Sensor for Strawberry Plants (Fragaria Ananassa). Journal of development research. Obtenido de https://typeset.io/papers/design-of-automatic-watering-system-prototype-with-arduino-1be811ikeng
dcterms.referencesRohit Killampalli, T. N. (2022). Automatic watering device. gardena. Obtenido de https://typeset.io/papers/automatic-watering-device-4kti5x51fjeng
dcterms.referencesS. Akwu, U. I. (2020). Automatic plant Irrigation Control System Using Arduino and GSM Module. International Journal of Engineering and Manufacturing (MECS Publisher). Obtenido de https://typeset.io/papers/automatic-plant-irrigation-control-system-using-arduino-and-57z2oao51deng
dcterms.referencesSun Yongfeng, P. X. (2016). Automatic water sprinkler. lowes. Obtenido de https://typeset.io/papers/automatic-water-sprinkler-3v2qi4pa8neng
dcterms.referencesT. Mohanasundram1, M. R. (2019). Automatic Watering System for Smart Agriculture using ESP32 Platform. 2022 IEEE 8th International Conference on Smart Instrumentation, Measurement and Applications (ICSIMA). Obtenido de https://typeset.io/papers/automatic-watering-system-for-smart-agriculture-using-esp32-25w1q3nxeng
dcterms.referencesTakahiro Nimura1, S. I. (2018). Prototyping of Automatic Watering System for Agriculture Over Thread Network. Smart Innovation, Systems and Technologies. Obtenido de https://typeset.io/papers/prototyping-of-automatic-watering-system-for-agriculture-jzn827v9rceng
dcterms.referencesWilliam, C. (julio de 2016). Diseño e implementación de sistema de riego automatizado y controlado por una placa Arduino para la finca “La Lucia”. 1-88. doi:http://repositorio.espam.edu.ec/handle/42000/301spa
dcterms.referencesXiaobao, P. (2018). Watering device for agriculture. netafin. Obtenido de https://typeset.io/papers/watering-device-for-agriculture-2qcr0v96tgeng
dcterms.referencesXiong, J., Chen, K., Xia, Z., Yang, X., & Liang, P. (2009). Design and clinical application of the interventional robot THMR-I. IEEE/ASME International Conference on Advanced Intelligent Mechatronics. doi:10.1109/AIM.2009.5229925eng
dcterms.referencesY.V Sripriya, R. K. (2013). Traffic Signals Generation with Bicolor Leds using Pic 18f Series Microcontroller . 2763-2766.eng
dcterms.referencesYingying, W., Qizhong, C., Rugang, W., & Changen, Y. (22 de 10 de 2007). Research and Design of the Embedded Software System of Automotive Engine Analyzer. 2007 8th International Conference on Electronic Measurement and Instruments. doi:10.1109/ICEMI.2007.4351254eng
dcterms.referencesYonglin, C. (2017). Agricultural machine watering trolley. agri expo. Obtenido de https://typeset.io/papers/agricultural-machine-watering-trolley-pv52ge3hqleng
dcterms.referencesZhang, T., Seo, M., Donyanavard, B., Dutt, N., & Kurdahi, F. (07 de 07 de 2020). Predicting Failures in Embedded Systems Using Long Short-Term Inference. IEEE Embedded Systems Letters, 13, 85-89. doi:10.1109/LES.2020.3007361eng
oaire.versioninfo:eu-repo/semantics/acceptedVersion
sb.programaIngeniería Mecatrónicaspa
sb.sedeSede Barranquilla

Archivos

Bloque original
Mostrando 1 - 2 de 2
Cargando...
Miniatura
Nombre:
PDF_Resumen.pdf
Tamaño:
343.69 KB
Formato:
Adobe Portable Document Format
No hay miniatura disponible
Nombre:
PDF.pdf
Tamaño:
1.2 MB
Formato:
Adobe Portable Document Format
Bloque de licencias
Mostrando 1 - 1 de 1
No hay miniatura disponible
Nombre:
license.txt
Tamaño:
2.93 KB
Formato:
Item-specific license agreed upon to submission
Descripción: