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2021 | OriginalPaper | Chapter

Solar Power-Based Smart Greenhouse

Authors : Padma Wangmo, Vinay Kumar Jadoun, Anshul Agarwal, Harish Kumar

Published in: Advances in Electromechanical Technologies

Publisher: Springer Singapore

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Abstract

Despite huge advances in technology, such as improved irrigation systems and genetically modified organisms, weather still plays the chief role in agriculture and as well the soil quality. Today, smart technology and efficiency are practically synonymous. By integrating average tasks like watering plants, turning lights on/off, and managing humidity in a smart greenhouse, people can analyze the efficiency of their processes and then also regulate them to increase productivity. Greenhouses have experienced many transformations and still are evolving, but their basic purpose remains the same. They create microclimate to enable crop growers to be active all year round. The most significant change in the greenhouse has been the introduction of automation. The purpose is to create such a greenhouse which is suitable to the environment of any region especially cold and arid regions and create an efficient system for maximum productivity with ease. These greenhouses can control the prime factors that influence crop yields, such as temperature, moisture, light exposure, ventilation, and more to create the most suitable climate for growing a plant according to the cultivator with the aid of solar energy.

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Literature
1.
go back to reference Gaikwad A, Ghatge A, Kumar H, Mudliar K (2016) Monitoring of smart greenhouse. Int Res J Eng Technol (IRJET) 3:573–575 Gaikwad A, Ghatge A, Kumar H, Mudliar K (2016) Monitoring of smart greenhouse. Int Res J Eng Technol (IRJET) 3:573–575
2.
go back to reference Arif KI, Abbas HF (2015) Design and implementation of smart greenhouse. Int J Comput Sci Mob Comput (IJCSMC) 4:335–347 Arif KI, Abbas HF (2015) Design and implementation of smart greenhouse. Int J Comput Sci Mob Comput (IJCSMC) 4:335–347
3.
go back to reference Imam A, Gaur D (2018) Smart greenhouse monitoring using internet of things. Int J Adv Res Electron Commun Eng (IJARECE) 7:519–523 Imam A, Gaur D (2018) Smart greenhouse monitoring using internet of things. Int J Adv Res Electron Commun Eng (IJARECE) 7:519–523
4.
go back to reference Ahamed MS, Guo H, Tanino K (2019) Energy saving techniques for reducing the heating cost of conventional greenhouses. Biosyst Eng 178:9–33CrossRef Ahamed MS, Guo H, Tanino K (2019) Energy saving techniques for reducing the heating cost of conventional greenhouses. Biosyst Eng 178:9–33CrossRef
5.
go back to reference Jacobson A (2000) Solar energy measurements for Ladakh, India. In: Proceedings of the 24th national renewable energy convention 2000 of the solar energy society of India. Solar energy measurements for Ladakh, India Jacobson A (2000) Solar energy measurements for Ladakh, India. In: Proceedings of the 24th national renewable energy convention 2000 of the solar energy society of India. Solar energy measurements for Ladakh, India
6.
go back to reference Santra P (2016) Scope of solar energy in cold arid region of India at Leh Ladakh. Ann Arid Zone 54(3–4):109–117 Santra P (2016) Scope of solar energy in cold arid region of India at Leh Ladakh. Ann Arid Zone 54(3–4):109–117
7.
go back to reference Adejuyigbe SB, Bolaji BO, Olanipekun MU, Adu MR (2013) Development of a solar photovoltaic power system to generate electricity for office appliances. Eng J 17(1):29–39CrossRef Adejuyigbe SB, Bolaji BO, Olanipekun MU, Adu MR (2013) Development of a solar photovoltaic power system to generate electricity for office appliances. Eng J 17(1):29–39CrossRef
8.
go back to reference Lin C-L (2015) Case study of solar power producing efficiency from a photovoltaic system. Open J Energy Effi 4:45–52CrossRef Lin C-L (2015) Case study of solar power producing efficiency from a photovoltaic system. Open J Energy Effi 4:45–52CrossRef
9.
go back to reference Ge TS, Wang RZ, Xu ZY, Pan QW, Du S, Chen XM, Ma T, Wu XN, Sun XL, Chen JF (2018) Solar heating and cooling: present and future development. Renew Energy 126:1126–1140CrossRef Ge TS, Wang RZ, Xu ZY, Pan QW, Du S, Chen XM, Ma T, Wu XN, Sun XL, Chen JF (2018) Solar heating and cooling: present and future development. Renew Energy 126:1126–1140CrossRef
10.
go back to reference Zhao D, Ji J, Yu H, Zhao X (2019) A study on thermal characteristic and sleeping comfort of a hybrid solar heating system applied in cold rural areas. Energy Build 182:242–250CrossRef Zhao D, Ji J, Yu H, Zhao X (2019) A study on thermal characteristic and sleeping comfort of a hybrid solar heating system applied in cold rural areas. Energy Build 182:242–250CrossRef
11.
go back to reference Karimi MS, Fazelpour F, Rosen MA, Shams M (2019) Comparative study of solar-powered underfloor heating system performance in distinctive climates. Renew Energy 130:524–535CrossRef Karimi MS, Fazelpour F, Rosen MA, Shams M (2019) Comparative study of solar-powered underfloor heating system performance in distinctive climates. Renew Energy 130:524–535CrossRef
12.
go back to reference Chaturvedi SK, Chen DT, Kheireddine A (1998) Thermal performance of a variable capacity direct expansion solar-assisted heat pump. Energy Convers Manage 39(3–4):181–191CrossRef Chaturvedi SK, Chen DT, Kheireddine A (1998) Thermal performance of a variable capacity direct expansion solar-assisted heat pump. Energy Convers Manage 39(3–4):181–191CrossRef
13.
go back to reference Wangmo P, Jadoun VK, Agarwal A (2019) A review on solar energy based smart greenhouse. In: 1st national conference on advances in mechanical engineering NCAME–2019, NIT Delhi Wangmo P, Jadoun VK, Agarwal A (2019) A review on solar energy based smart greenhouse. In: 1st national conference on advances in mechanical engineering NCAME–2019, NIT Delhi
Metadata
Title
Solar Power-Based Smart Greenhouse
Authors
Padma Wangmo
Vinay Kumar Jadoun
Anshul Agarwal
Harish Kumar
Copyright Year
2021
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-5463-6_12

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