Mobile Robot + IoT: Project of Sustainable Technology for Sanitizing Broiler Poultry Litter

Author:

Kunz Cechinel Alan1ORCID,Soares Carlos Eduardo2,Pfleger Sergio Genilson3ORCID,De Oliveira Leonardo Luiz Gambalonga Alves4ORCID,Américo de Andrade Ederson5ORCID,Damo Bertoli Claudia6,De Rolt Carlos Roberto7ORCID,De Pieri Edson Roberto1,Plentz Patricia Della Méa3ORCID,Röning Juha8ORCID

Affiliation:

1. Graduate Program in Automation and System Engineering, Federal University of Santa Catarina, Florianópolis 88040-900, SC, Brazil

2. Graduate Program in Food Sciences, Federal University of Santa Catarina, Florianópolis 88034-001, SC, Brazil

3. Graduate Program in Computer Science, Federal University of Santa Catarina, Florianópolis 88040-900, SC, Brazil

4. Undergraduate Program in Computer Science, Federal University of Santa Catarina, Florianópolis 88040-900, SC, Brazil

5. Agronomy Department, Federal Institute of Paraná, União da Vitória 84603-264, PR, Brazil

6. Graduate Program in Plant and Animal Science, Catarinense Federal Institute, Camboriú 88340-055, SC, Brazil

7. Graduate Program in Business Management and Socioeconomic Science—ESAG, State University of Santa Catarina—UDESC, Florianópolis 88035-001, SC, Brazil

8. Biomimetics and Intelligent Systems Group, University of Oulu, P.O. Box 4500, 90014 Oulu, Finland

Abstract

The traditional aviary decontamination process involves farmers applying pesticides to the aviary’s ground. These agricultural defenses are easily dispersed in the air, making the farmers susceptible to chronic diseases related to recurrent exposure. Industry 5.0 raises new pillars of research and innovation in transitioning to more sustainable, human-centric, and resilient companies. Based on these concepts, this paper presents a new aviary decontamination process that uses IoT and a robotic platform coupled with ozonizer (O3) and ultraviolet light (UVL). These clean technologies can successfully decontaminate poultry farms against pathogenic microorganisms, insects, and mites. Also, they can degrade toxic compounds used to control living organisms. This new decontamination process uses physicochemical information from the poultry litter through sensors installed in the environment, which allows accurate and safe disinfection. Different experimental tests were conducted to construct the system. First, tests related to measuring soil moisture, temperature, and pH were carried out, establishing the range of use and the confidence interval of the measurements. The robot’s navigation uses a back-and-forth motion that parallels the aviary’s longest side because it reduces the number of turns, reducing energy consumption. This task becomes more accessible because of the aviaries’ standardized geometry. Furthermore, the prototype was tested in a real aviary to confirm the innovation, safety, and effectiveness of the proposal. Tests have shown that the UV + ozone combination is sufficient to disinfect this environment.

Funder

National Council for Scientific and Technological Development

Publisher

MDPI AG

Reference61 articles.

1. (2021, November 25). Industry 5.0: Towards More Sustainable, Resilient and Human-Centric Industry. Available online: https://ec.europa.eu/info/news/industry-50-towards-more-sustainable-resilient-and-human-centric-industry-2021-jan-07_en.

2. Soares, C.E., Scussel, V.M., and Dahlke, F. (2021). Sustainable Agriculture Reviews 47, Springer.

3. Occupational exposure to insecticides and their effects on the auditory system;Teixeira;Noise Health,2002

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5. Pesticide pollution in agricultural areas of Northern Vietnam: Case study in Hoang Liet and Minh Dai communes;Hoai;Environ. Pollut.,2011

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