Manuscript Title:

COST EFFECTIVE ABOUT IOT-BASED ACCORDINGLY TO WEATHER MONITORING SYSTEM DEVELOPMENT AND IMPROVE AVERAGE OF CROPS

Author:

TAYYABA IFTIKHAR, SALEEM ZUBAIR AHMAD, MUHAMMAD WASEEM IQBAL, SABAH ARIF, KHALID HAMID, M. ASHRAF NAZIR

DOI Number:

DOI:10.17605/OSF.IO/TKAH8

Published : 2023-02-10

About the author(s)

1. TAYYABA IFTIKHAR - Department of Software Engineering, Superior University, Lahore, Pakistan.
2. SALEEM ZUBAIR AHMAD - Department of Software Engineering, Superior University, Lahore, Pakistan.
3. MUHAMMAD WASEEM IQBAL - Ph.D., Associate Professor Department of Software Engineering, Superior University, Lahore, Pakistan.
4. SABAH ARIF - Lecturer, Department of Computer Science, Superior University Lahore, Pakistan.
5. KHALID HAMID - Ph.D. Scholar, Department of Computer Science, Superior University, Lahore, Pakistan and Lecturer at NCBA & E University East Canal Campus Lahore.
6. M. ASHRAF NAZIR - Ph.D. Scholar, Department of Computer Science, Superior University, Lahore, Pakistan and Lecturer at GC University, Lahore.

Full Text : PDF

Abstract

Measurement of climate situations is critical for adapting to excessive weather modifications and global warming, which happened due to intense climate situations. In this, we have opinions on IOT-based surrounding tracking machines. The proposed machine's main goal is to offer environmental parameters to faraway regions through the internet. The proposed machine presents a possible and straightforward answer for environmental and ambient tracking packages. There are several approaches to observing and expecting climate situations utilized in a vast variety of packages starting from fishery and marine transportation to navy operations and the aviation industry. This study ambitions to expand a custom records machine and UI layout for the climate tracking machine. Therefore, it can be controlled on a standalone internet server and may be evolved on a cellular utility which includes Android. Nevertheless, the maximum of them is non-transportable and requires everyday maintenance, better product expenses and professional labor. Consequently, it is miles critical to discover an answer to conquer those issues, in view that real-time meteorological statistics logging is essential in numerous industries to make critical selections and predictions. This project offers an ergonomically designed, rechargeable and transportable handheld climate station that can acquire immediately meteorological measurements and broadcast them in real time. Integration of numerous superior and low-budget IoT drivers assist this to face out from present answers as a low-cost tool and beautify its commercial enterprise value.


Keywords

Weather control, Arduino, Monitoring Weather analysis, Moisture Control Temperature Moderation, Humidity Control.