Design and implementation of fuzzy control system for egg incubator based on IoT technology

Author:

Mujčić Edin,Drakulić Una

Abstract

Abstract Nowadays, automatic systems are using in more spheres of industry, and in this way, human intervention is avoided and used as minimally as possible. In the chicken poultry industry, the use of mother hens is transferring to automatic egg incubating systems. Such systems are helpful for the farmers to incubate the eggs automatically without the need for human intervention. These systems work by keeping the physical quantities, temperature and humidity, at the optimal level. In that way, the fetuses inside eggs are growing without the presence of the mother hen. The egg incubating systems not only improve poultry production considerably but also help in the regularity of income making, enabling the farmers to be able to get transition into possible rural entrepreneurship. This paper describes the design and implementation of a fuzzy control system for egg incubating based on IoT technology. The microcontroller is programmed to work as a fuzzy logic control system for controlling microclimate conditions in the egg incubator to keep the conditions for different eggs type optimal. Informations from the temperature and humidity sensors are sent wirelessly to the cloud. Also, the implemented egg incubating system enables automatic tracking of the remaining days until hatching chickens. In this way, remote monitoring, from any location, of microclimatic conditions inside the egg incubator is enabled. For the experimental work analysis of the implemented egg incubating system, the egg incubator is made. Based on the results of the experimental work analysis can be seen that the egg incubating system works well and that it helps with improving poultry production.

Publisher

IOP Publishing

Subject

General Medicine

Reference10 articles.

1. Poultry egg incubation: Integrating and optimizing production efficiency;Boleli;Revista Brasileira de Ciência Avícola,2016

2. The Smart Greenhouse System Based on The Mobile Network and IoT;Šabić,2020

3. Effect of eggshell temperature during incubation on embryo development, hatchability, and posthatch development;Lourens;Poultry Science,2005

4. Effect of relative humidity during incubation at a set eggshell temperature and brooding temperature posthatch on embryonic mortality and chick quality;van der Pol;Poultry Science,2013

5. Development of an Automatic Electric Egg;Adegbulugbe;Interantional Journal of Scientific & Engineering Research,2013

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