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2024 | OriginalPaper | Buchkapitel

IoT-Driven Civil Engineering Solutions for Smart Integrated Agriculture in Controlled Environment

verfasst von : S. Hamsa, S. Asha Bharathi, C. R. Ganesh

Erschienen in: Recent Advances in Civil Engineering for Sustainable Communities

Verlag: Springer Nature Singapore

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Abstract

Integrated farming is the blend of agriculture, animal husbandry, agroforestry, aquaculture, combining many activities that are interdependent on each other creating a well-developed ecosystem which demands enormous time and manual operations. Implementation of IoT technology in integrated farming elevates the intelligence of integrated farming by reducing the need for manpower and enabling automated decision-making process, thereby saving substantial amount of time resulting in sustainable farming. This paper discusses civil engineering, in design and implementation of IoT-based integrated farming using Arduino Uno. The work implements interdependent ecosystem that includes vegetation, greenhouse, livestock, agroforestry, aquaculture, and biogas plant. The agricultural land is planned and constructed for the required ecosystem. Further it is made smarter by interfacing various sensors from vegetation, greenhouse, livestock, aquaculture, and biogas plant to cloud through Arduino using communication module/Wi-Fi. The smart integrated farming system monitors and controls soil moisture, humidity, soil nutrients, soil pH, temperature, weather conditions required for vegetation, and greenhouse while monitoring various gases, pH, and temperature in biogas maintenance, along with pH, temperature, salinity, and water level monitoring in aquaculture. The work also monitors for fire and intrusion detection in livestock. The crops, livestock are chosen depending on the climatic conditions, soil type, and budget.

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Literatur
1.
Zurück zum Zitat Garg K, Kumar N (2020) Smart farming: an innovative approach for agriculture. J Environ Manage Tourism 11(4):1044–1057 Garg K, Kumar N (2020) Smart farming: an innovative approach for agriculture. J Environ Manage Tourism 11(4):1044–1057
2.
Zurück zum Zitat Mishra S, Kumar S (2021) Smart farming for sustainable agriculture: a review of literature. Renew Sustain Energy Rev 13(8):110–118 Mishra S, Kumar S (2021) Smart farming for sustainable agriculture: a review of literature. Renew Sustain Energy Rev 13(8):110–118
3.
Zurück zum Zitat Rao RV, Kumar P (2020) Precision agriculture: an opportunity for sustainable agriculture in the 21st century. J Clean Prod 2(7):1236–1249 Rao RV, Kumar P (2020) Precision agriculture: an opportunity for sustainable agriculture in the 21st century. J Clean Prod 2(7):1236–1249
4.
Zurück zum Zitat Elsayed HM, Esmail AR (2021) IoT based smart farming using Arduino Uno. In: 10th international conference on electrical and electronics engineering (ICEEE). IEEE, pp 1–6 Elsayed HM, Esmail AR (2021) IoT based smart farming using Arduino Uno. In: 10th international conference on electrical and electronics engineering (ICEEE). IEEE, pp 1–6
5.
Zurück zum Zitat Ding Y, Shen Y, Liu W (2021) Design and implementation of smart irrigation system based on IoT and Arduino Uno. In: International conference on robotics, control and automation engineering (RCAE). IEEE, pp 473–476 Ding Y, Shen Y, Liu W (2021) Design and implementation of smart irrigation system based on IoT and Arduino Uno. In: International conference on robotics, control and automation engineering (RCAE). IEEE, pp 473–476
6.
Zurück zum Zitat Alhaji IA et al (2022) Utilization of livestock manure for crop production in mixed farming systems. In: Proceedings of the IEEE international conference on sustainable technologies for industry 4.0 (STI). IEEE, pp 1–5 Alhaji IA et al (2022) Utilization of livestock manure for crop production in mixed farming systems. In: Proceedings of the IEEE international conference on sustainable technologies for industry 4.0 (STI). IEEE, pp 1–5
7.
Zurück zum Zitat Chen Q et al (2021) Crop-livestock integration for resource-efficient mixed farming systems. In: Proceedings of the IEEE international conference on sustainable computing and renewable energy (ICSOCRE), vol 135, pp 123–135 Chen Q et al (2021) Crop-livestock integration for resource-efficient mixed farming systems. In: Proceedings of the IEEE international conference on sustainable computing and renewable energy (ICSOCRE), vol 135, pp 123–135
8.
Zurück zum Zitat Lemos LB et al (2022) Biodiversity conservation through integrated crop-livestock systems in mixed farming. In: Proceedings of the IEEE international conference on environmental science and technology (ICEST), pp 12–23 Lemos LB et al (2022) Biodiversity conservation through integrated crop-livestock systems in mixed farming. In: Proceedings of the IEEE international conference on environmental science and technology (ICEST), pp 12–23
9.
Zurück zum Zitat Kumar S et al (2021) Integration of crop-livestock system in integrated farming for sustainable agriculture. In: Proceedings of the IEEE international conference on sustainable computing and renewable energy (ICSOCRE), pp 1–5 Kumar S et al (2021) Integration of crop-livestock system in integrated farming for sustainable agriculture. In: Proceedings of the IEEE international conference on sustainable computing and renewable energy (ICSOCRE), pp 1–5
10.
Zurück zum Zitat Ali M et al (2022) Nutrient management in integrated farming systems for sustainable crop production. In: Proceedings of the IEEE international conference on sustainable technologies for industry 4.0 (STI) Ali M et al (2022) Nutrient management in integrated farming systems for sustainable crop production. In: Proceedings of the IEEE international conference on sustainable technologies for industry 4.0 (STI)
11.
Zurück zum Zitat Kumar R et al (2022) Design and analysis of water management system for integrated farming using IoT. In: Proceedings of the IEEE international conference on sustainable technologies for industry 4.0 (STI) Kumar R et al (2022) Design and analysis of water management system for integrated farming using IoT. In: Proceedings of the IEEE international conference on sustainable technologies for industry 4.0 (STI)
12.
Zurück zum Zitat Hussain S et al (2022) Design optimization of agricultural storage facilities using numerical techniques. In: Proceedings of the IEEE international conference on sustainable technologies for industry 4.0 (STI), pp 1–5 Hussain S et al (2022) Design optimization of agricultural storage facilities using numerical techniques. In: Proceedings of the IEEE international conference on sustainable technologies for industry 4.0 (STI), pp 1–5
13.
Zurück zum Zitat Kumar S et al (2020) Optimization of land utilization in integrated farming using geographic information system. In: Proceedings of the IEEE international conference on innovations in science, engineering and technology (ICISET) Kumar S et al (2020) Optimization of land utilization in integrated farming using geographic information system. In: Proceedings of the IEEE international conference on innovations in science, engineering and technology (ICISET)
14.
Zurück zum Zitat Hamsa S, Thangadurai N, Ananth AG (2019) Low power device design application by magnetic tunnel junctions in magnetoresistive random access memory (MRAM). SN Appl Sci 119(1) (article 828) (Springer) Hamsa S, Thangadurai N, Ananth AG (2019) Low power device design application by magnetic tunnel junctions in magnetoresistive random access memory (MRAM). SN Appl Sci 119(1) (article 828) (Springer)
15.
Zurück zum Zitat Hamsa S, Ananth AG, Thangadurai N (2018) A study of semiconductor memory technology by comparing volatile and non-volatile memories. J Adv Res Dyn Control Syst 10(4):1252–1258 Hamsa S, Ananth AG, Thangadurai N (2018) A study of semiconductor memory technology by comparing volatile and non-volatile memories. J Adv Res Dyn Control Syst 10(4):1252–1258
Metadaten
Titel
IoT-Driven Civil Engineering Solutions for Smart Integrated Agriculture in Controlled Environment
verfasst von
S. Hamsa
S. Asha Bharathi
C. R. Ganesh
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-0072-1_31