This paper is published in Volume-7, Issue-3, 2021
Area
Engineering And Technology , Automation
Author
Digvijay Shinde, Sayali Shinde, Dhanashri Salunkhe, Atharvraj Sawant, Sayali Patil, Pakija Nadaf
Org/Univ
Annasaheb Dange College of Engineering and Technology, Ashta, Ashta, Maharashtra, India
Pub. Date
19 June, 2021
Paper ID
V7I3-1952
Publisher
Keywords
Greenhouse, Automation, ZigBee Technology, Sensors, Agriculture.

Citationsacebook

IEEE
Digvijay Shinde, Sayali Shinde, Dhanashri Salunkhe, Atharvraj Sawant, Sayali Patil, Pakija Nadaf. Automated greenhouse monitoring and control with auto rooftop opening system, International Journal of Advance Research, Ideas and Innovations in Technology, www.IJARIIT.com.

APA
Digvijay Shinde, Sayali Shinde, Dhanashri Salunkhe, Atharvraj Sawant, Sayali Patil, Pakija Nadaf (2021). Automated greenhouse monitoring and control with auto rooftop opening system. International Journal of Advance Research, Ideas and Innovations in Technology, 7(3) www.IJARIIT.com.

MLA
Digvijay Shinde, Sayali Shinde, Dhanashri Salunkhe, Atharvraj Sawant, Sayali Patil, Pakija Nadaf. "Automated greenhouse monitoring and control with auto rooftop opening system." International Journal of Advance Research, Ideas and Innovations in Technology 7.3 (2021). www.IJARIIT.com.

Abstract

The development of internet technology has brought light to the development of agricultural modernization. This paper introduces agriculture greenhouse monitor system which is low cost power consumption system constructed on the basis of wireless communication. ZigBee Technology is a new wireless communication technology, relative to Bluetooth and Wi-Fi. ZigBee Technology has the characteristics of low complexity, low power consumption, low data rate and low cost. This technology is suitable for the field of automatic control system and implementing devices. Proposed framework consist closed loop system that will execute control action to adjust temperature, humidity, light intensity and soil moisture according to changes in environment. Along with basic structure or circuit where input to Arduino is driven to get specified output as per path. This all which will be interfaced with Arduino Controller. The significant data monitored by sensors will be used as primary initialization in the structure as any High/low occur in the environment of the greenhouse. The main components such as Arduino-Nano is driven with its programme, GSM module connectivity is based on the main source of user and driver is placed to work along with the input of the Sensors as the main data such as Temperature, humidity and moisture is fixed as per requirement of the specific crop. The Strategies and processes used in past researches are studied and compared with our process. The results from the process or evaluation are compared with the real values present.