Hussin, E. and Wen, N.J. and Sahar, N. and Zakariya, A. and Adilah, F. and Leong, H. and Juhari, R.M. (2022) Monitoring System with Humidity and Growth Level Detection for Horticulture. In: UNSPECIFIED.
Full text not available from this repository.Abstract
Smart Farming System with humidity and growth level detection presented in this paper is designed to monitor and control the production of the fresh produce. This smart farming system is designed to monitor the changes due to environment parameters which includes temperature, soil moisture level of the crops, and growth level of the crops. A sensor is placed at certain distance from the plant and the growth rate of the plant is monitored from time to time. Any plant which did not show positive or consistent growth rate will be eliminated and replace with new seeds. Therefore, the farmer can produce more productive plan in the estimated time. The system allows the user to choose the type of soils used for the plantation. The specific temperature and humidity level have been stored in the system and will be automatically set based on the soil selected. The humidity sensor included in this system can benefit the farmer by constantly monitor the humidity level of the soils from time to time before he can continue with the watering the crops. When the soil moisture humidity sensor detects the percentage of the soil is lower than the value that was pre-set in the system, the water pump will be trigger and start to pump water to the crop. While the water pump started to supply the water, the humidity sensor will continue to measure the sold humidity. The water pump will stop after the soil moisture humidity level reached the healthy level for the crop to growth. An automatic cooling System is a system that used to maintain and monitor the temperature in the greenhouse or plantation area. For sensitive crops such the temperature monitoring is very important to ensure the growth and production of the produce. The Smart Farming System proposed in this paper is built with a combination management system including environment parameters monitoring system and automatic technology control system. Arduino UNO is the central unit that plays an important role to receive and control all the function of the project. This combined system is design for modern smart horticultural or large-scale horticultural in order to produce more sustainable production. © The 2022 International Conference on Artificial Life and Robotics (ICAROB2022).
Item Type: | Conference or Workshop Item (UNSPECIFIED) |
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Additional Information: | cited By 0; Conference of 27th International Conference on Artificial Life and Robotics, ICAROB 2022 ; Conference Date: 20 January 2022 Through 23 January 2022; Conference Code:271609 |
Depositing User: | Mr Ahmad Suhairi UTP |
Date Deposited: | 19 Dec 2023 03:24 |
Last Modified: | 19 Dec 2023 03:24 |
URI: | https://khub.utp.edu.my/scholars/id/eprint/17752 |