Didactic milk quality meter refrigerated by the small rural producer / Medidor de qualidade do leite didáctico refrigerado pelo pequeno produtor rural

Authors

  • Manoel Alves Cordeiro Neto Brazilian Journals Publicações de Periódicos, São José dos Pinhais, Paraná
  • Gerônimo Barbosa Alexandre

DOI:

https://doi.org/10.34117/bjdv7n3-642

Keywords:

Prototype, Didactic meter, Electronic instrumentation.

Abstract

This study aimed at the design and assembly of a probe to measure physical, chemical and electrical parameters in milk refrigeration. The system relies on the measurement system, data storage and remote monitoring system and aims to support small farmers. Detailing in real time parameters such as milk pH and temperature as well as the electrical demand curve consumed by the equipment, using low cost hardware. The work differential is in: (1) remote data supervision; (2) low cost; (3) low energy consumption by the components used in the prototype; (4) didactic character; (5) measurement of a greater number of variables. The monitoring system proved to be reliable and efficient in measurements. The differential of the proposed hardware is the low cost, the rate of uploads of the measured data and the reproducibility by other educational institutions and the quality of the measurements.

 

References

ANEEL, Electricity Distribution Procedures in the National Electric System (Brazil): PRODIST Module 3 - Access to the Distribution System. 2016.

AKBAR, M. O; et al, IoT for Development of Smart Dairy Farming, Hindawi Journal of Food Quality, 2020.

EMPRAPA - Empresa Brasileira de Pesquisa Agropecuária (Brazilian Agricultural Research Corporation), Normativas do leite (Milk regulations in Brazil), N.I. 76 and 77. 2018, Brazil.

FAO - Food and Agriculture Organization of the United Nations, Global food losses and food waste – Extent, causes and prevention. Rome, 2011.

IBGE - Instituto Brasileiro de Geografia e Estatística (Brazilian Institute for Geography and Statistics), Produção da Pecuária Municipal (Municipal Livestock Production) (2016). Rio de Janeiro, 2017.

MAPA - Ministério da Agricultura, Pecuária e Abastecimento (Ministry of Agriculture, Livestock and Supply of Brazil), Technical regulations for the collection of chilled raw milk and its transport in bulk, N.I. 52, 2012.

NAYYAR, A; PURI, E. V. Smart Farming: IoT Based Smart Sensors Agriculture Stick for Live Temperature and Moisture Monitoring using Arduino, Cloud Computing & Solar Technology, Proceedings, International Conference on Communication and Computing Systems, 2016.

PUTJAIKA, et al. A control system in an intelligent farming by using Arduino technology, Proceedings, 2016 Fifth ICT International Student Project Conference (ICT-ISPC), Nakhon Pathom, 2016, pp. 53-56.

RODRIGUES, R.; FONSECA, L. M.; SOUZA, M. R. Acidity of milk. Veterinary and Animal Science Technical Notebooks, vol 13, 1995, pp. 63-72.

SANTOS, L. H. S; MOTA, L. T. M. Use of long range wireless technology for Smart grids. Brazilian Journal of Development, v. 6, n.7, p.54005-54013, July, 2020.

SOLARDUINO. 2020. How to measure AC Real Power and Apparent Power with Arduino? Available: https://solarduino.com/how-to-measure-ac-power-with-arduino/

ZOCCAL, R A atividade leiteira retratada no Censo Agropecuário 2017, Revista Balde Branco, vol. 646, Balde Branco, Ed. São Paulo, 2018, pp. 16-17.

Downloads

Published

2021-03-24

How to Cite

Neto, M. A. C., & Alexandre, G. B. (2021). Didactic milk quality meter refrigerated by the small rural producer / Medidor de qualidade do leite didáctico refrigerado pelo pequeno produtor rural. Brazilian Journal of Development, 7(3), 30151–30164. https://doi.org/10.34117/bjdv7n3-642

Issue

Section

Original Papers