IoT based Smart Irrigation System using Raspberry Pi

Author(s):  
R. Karthikamani ◽  
Harikumar Rajaguru

Agriculture is a major source of food production in our country. Growth in population increase the demand for food production and agriculture is the main source. Irrigation in agriculture is an important process that affects the development of crops. In particular, farmers visit their agricultural fields regularly to check the level of soil moisture and water is pumped by motors to irrigate their respective fields on the basis of requirements. But the limitation of protecting crops from animals becomes a major concern for yield. This works presents the protection system in addition to the automated irrigation system.


Author(s):  
Madhushree Dere ◽  
Naiwrita Dey ◽  
Subhasish Roy ◽  
Sagnik Roy ◽  
Dibyarup Das ◽  
...  

Author(s):  
S. N. Ishak ◽  
N. N. N. Abd Malik ◽  
N. M. Abdul Latiff ◽  
N. Effiyana Ghazali ◽  
M. A. Baharudin

Internet of Things (IoT) is an advanced technology for monitoring and controlling device anywhere in the world. It can connect devices with living things. Agriculture is one of the major sectors which contribute a lot to the financial of India and to get quality product, proper irrigation has to be performed, to reduce man power using modern technology of internet of things IoT in today’s life. Soil moisture is an integral part of plant life, which directly affects crop growth and yield, as well as irrigation scheduling. This system will be a substitute to traditional farming method. We will develop such a system that will help a farmer to know his field status in his home or he may be residing in any part of the world. It proposes an automatic irrigation system for the agricultural lands. Currently the automation is one of the important roles in the human life. It is not only provides comfort but also efficiency and time saving. So here it is also designs a smart irrigation technology by using raspberry pi and connecting to the weather API. Raspberry-pi is the main heart of the whole system. An automated irrigation system was developed to optimize water use for agricultural crops. Automation allows us to control appliances automatically. The objectives of this to control the water motor automatically, To monitor the soil, water level using weather API.A robotized irrigation system framework might have been created should streamline water utilize to agriculture crops. Mechanization permits us with control appliances naturally. Those targets for this on control those water motor naturally monitor the soil, water level utilizing weather API In previously we are using the soil moisture control by using some set of sensors by this water is pumping continuously even though it is rainy.so by this over flow of the water is taken place to overcome this problem we are using the cloud monitoring system based on the weather conditions.


Author(s):  
Shetty Sagar ◽  
Bardhan Debjeet ◽  
Lokhande Advait ◽  
Nitish Mishra

India’s population rate is increasing day by day. In near future, we could face serious problem of food and other daily necessities, hence the development of agriculture is necessary. Today, the farmers are suffering due to inconsistent rains and scarcity of water. The main objective of this paper is to provide an automatic irrigation system, thereby saving their time, money & power of the farmer. The traditional farm-land irrigation techniques require manual intervention. With the automated technology of irrigation, the human intervention can be minimized. There will be moisture sensors installed on the field. Whenever there is a change in water content of soil these sensors sense the change gives an interrupt signal to the micro-controller. As soil is recognized as one of the most valuable natural resource whose pH property used to describe the degree of acidity or basicity which affect nutrient availability and ultimately plant growth. For capturing the images, a camera is used and after processing the captured image the pH value of the soil is determined and accordingly crops or plants are suggested that can be grown in the field. Due to detection of soil pH value, we can reduce the chances of crops being destructed.


2016 ◽  
Vol 251 ◽  
pp. 237-241 ◽  
Author(s):  
Çağatay Ersin ◽  
Riza Gürbüz ◽  
Ali Kemal Yakut

In this system, plants’ optimum water need level is controlled by Ardiuno Uno Microcontroller. With the help of the buttons on the Lcd Shields, the plant species are chosen and after the humidity level is entered, it is controlled by Ardiuno Uno Microcontroller. When the humidity level of the earth decreases, Ardiuno Uno Microcontroller sends data for irrigation the plant and takes photo of it with Raspberry Pi before irrigation. The e-mail which contains necessary datum and photos is sent to related person. When the irrigation of the plants reaches the chosen humidity level, Ardiuno Uno Microcontroller stops irrigation and Raspberry Pi sends photos of the plant as an e-mail to the related person again after irrigation. The energy of this system is provided by the battery charging.


2019 ◽  
Vol 11 (3) ◽  
pp. 782 ◽  
Author(s):  
Yair Rivas-Sánchez ◽  
María Moreno-Pérez ◽  
José Roldán-Cañas

Green wall irrigation procedures are a particularly important and hard task, given that the quality of the green wall depends on them. There is currently a wide variety of irrigation programmers available, with a range of functions and prices, thereby replacing manual activities and making it easier to maintain green walls. This paper proposes the use of low-cost automated irrigation programmers via a freeware called Arduino. The system is based on air and substrate measurements to ensure optimal plant growth and high water-use efficiency. At certain thresholds, the irrigation system is activated. This not only makes irrigation more convenient but also helps to reduce energy consumption, increases irrigation efficiency and saves time. The data is then sent via Transmission Control Protocol using Internet of Things technology, in this case ThingSpeak. The platform compiles the data and presents them in simple graphical format, thus enabling real-time monitoring from wherever there is Internet access. Together with Arduino, the project incorporates the Raspberry pi system that operates like a database via Hypertext Transfer Protocol Wi-Fi received by a Structured Query Language (MySQL) server using Hypertext Preprocessor. These data are used for the subsequent analysis of green wall performance.


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