Smart Control and Monitoring System for Closed Poultry House based on IoT

Surateno Surateno, Syamsiar Kautsar, Risse Entikaria Rachmanita, Aan Anwaludin, M. Adhiyatma, Rosa Tri Hertawamati, Budi Hariono, Fendik Eko Purnomo, Sryang Tera Sarena

Abstract


The application of technology in the livestock sector has been carried out to increase the productivity of the livestock business. Closed chicken coops are one of the applications of technology in the livestock sector by utilizing a microcontroller that can control the temperature and ammonia levels in the coop under optimal conditions for fattening chickens. When the temperature rises (hot), the system set on the microcontroller will make the fan turn on automatically. This study aims to improve the offline and semi-manual fan control system in closed chicken coops to become automatic. By utilizing Internet of Things (IoT)-based technology, monitoring the condition of the chicken coop can be more easily accessed remotely. The method uses the if-then rule to regulate fan performance based on variable temperature and ammonia levels. The fan work set-point value can be set through the Android application online. Based on the test results, the IoT system treatment can work well. A consumer satisfaction survey was conducted on breeders with satisfactory results to ensure their feasibility as a commercial product.


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References


I. Lahlouh, A. Elakkary, N. Sefiani, State feedback controller in a closed poultry house system, ICAC. (2018) 1 - 6.

A. Laknizi, A. ElMaakoul, A. Ben Abdellah, M. Bouya, S. Dhimdi, S. Said, Evaluation of earth-air heat exchanger for cooling and heating a poultry house: Case study in Morocco, IRSEC. (2015) 1 - 5.

M.H. Lashari, A.A. Memon, S.A.A. Shah, K. Nenwani, F. Shafqat, IoT based poultry environment monitoring system, IOTAIS. (2018) 1 - 5.

N. Manshor, A.R. Abdul Rahiman, M.K. Yazed, IoT based poultry house monitoring, ICCET. (2019) 72 - 75.

T. A. Sarjana, et al. Microclimate Condition Changes due to Zone Placement in Broiler Closed House, Seminar Nasional Kebangkitan Peternakan III : "Hilirisasi Teknologi Peternakan pada Era Revolusi Industri 4.0" (2019).

Muharlien et al, Microclimate Analysis of Opened House and Closed House in Broiler Rearing, IOP Conf. Ser.: Earth Environ. Sci. 478 012078 (2020).

Bochen Song, at al, Comparison and Correlation Analysis of Immune Function and Gut Microbiota of Broiler Chickens Raised in Double-Layer Cages and Litter Floor Pens, ASM Journals. 10 (1) (2022).

Ali H. Nawaz, Poultry Response to Heat Stress: Its Physiological, Metabolic, and Genetic Implications on Meat Production and Quality Including Strategies to Improve Broiler Production in a Warming World, Frontiers in Veterinary Science 8 (2) (2021) 1 - 16.

L. Ilyas, E. Ahmed and S. Nacer, PID Controller of a MIMO system using Ant Colony Algorithm and its application to a poultry house system, 5th International Conference on Optimization and Applications (ICOA), (2019), 1-7.

Wicaksono Damar, Taufiq Kamal, Micro climate monitoring system in closed broiler cages based on the internet of things, Jurnal Teknologi dan Sistem Komputer, 8 (2) (2020), 100-105.

T. Cao-Hoang, C.N. Duy, Environment monitoring system for agricultural application based on wireless sensor network, In 7th International Conference on Information Science and Technology, Da Nang. Vietnam. (2017), 99 - 102.

S.A.J. Singh, P. Raviram, K.S. Kumar, Embedded based green house monitoring system using PIC microcontroller, ICGCCEE. (2014) 1 - 4.

S. Laokok, U. Ketprom, Web services with poultry traceability system, 2008 5th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology. 2008, 197 - 200.

I. Lahlouh, A. Elakkary, N. Sefiani, State feedback controller in a closed poultry house system, ICAC. (2018) 1 - 6.

T. Upachaban, A. Boonma, T. Radpukdee, Climate control system of a poultry house using sliding mode control, ISFA. (2016) 53 - 58.

Aladwani, The development of two tools for measuring the easiness and Usefulness of transactional web sites, Eur J Inf Syst. 11 (2002) 223 - 234.

A. A. Hamiyanti, et al, Production Performance of the Broiler Under Open, Semi-closed, and Closed House Systems During Rainy Season, 3rd International Conference on Environmentally Sustainable Animal Industry, (2023), 411 – 419.

F.D. Davis, Perceived usefulness, perceived ease of use and user acceptance of informationtechnology, MIS Quarterly. 1989.




DOI: https://doi.org/10.24071/ijasst.v6i1.7079

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