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The system suggested in this study is a cutting-edge approach for tracking meteorological conditions in a specific location and making the data available elsewhere in the globe. The Internet of Items (IoT) is the technology underlying this, and it is a sophisticated and efficient method for connecting things to the internet and linking the entire universe of things in a network. Electronic devices, sensors, and vehicle electronic equipment might all be found here. The system uses sensors to monitor and regulate ambient factors such as temperature and relative humidity, and then sends the data to a web page, where it is plotted as graphical statistics. The data updated by the established system may be accessed over the internet from any location on the planet.

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References

  1. Deshmukh D, Ahmed MR, Dominic JA, Gupta A, Achari G, Hassan QK. Suitability Assessment of Weather Networks for Wind Data Measurements in the Athabasca Oil Sands Area. Climate, 2022 Feb;10(2):10.
    DOI  |   Google Scholar
  2. Mohapatra D, Subudhi B. Development of a Cost Effective IoT-based Weather Monitoring System. IEEE Consumer Electronics Magazine. 2022 Jan 4.
    DOI  |   Google Scholar
  3. Mohammed AA, Hilmi BM, Osman MA. Design and Implementation of a Weather Monitoring System Using Internet of Things (loT). (Doctoral dissertation).
     Google Scholar
  4. Rajapaksha TT, Alexander A, Fernando L, Than A, Nguyen HL. Real-Time Weather Monitoring and IoT-Based Palmtop Device for Smart Agriculture. SN Computer Science, 2022 Jan;3(1):1-6.
    DOI  |   Google Scholar
  5. Iliyasu I, Rabi’atu Mukhtar WD, Tanko S, Nyeri JD, Sanda YS. ARDUINO BASED SMART SENSING PLATFORM FOR MONITORING WEATHER PARAMETERS.
     Google Scholar
  6. Zhang S, Guo Y, Li S, Ke Z, Zhao H, Yang J, Wang Y, et al. Investigation on environment monitoring system for a combination of hydroponics and aquaculture in greenhouse. Information Processing in Agriculture, 2022 Mar 1;9(1):123-34.
    DOI  |   Google Scholar
  7. Ramanantsoa AH, Blanc E, Rambolamanana G, Rakotoarisoa AT, Randrianarinosy F, Andrianaivoarisoa JB. Effects of On-Site Weather Conditions on the Detection Capability of the Infrasound Station of Madagascar I33MG. Atmospheric and Climate Sciences, 2022 Feb 10;12(2):297-312.
    DOI  |   Google Scholar
  8. Li W, Wang D, Zhou W, Wang Y, Shen C. Health Monitoring Framework for Weather Radar Based on Long Short-Term Memory Network with a Real Case Study. Journal of Sensors, 2022 Jan 7;2022.
    DOI  |   Google Scholar
  9. Llugsi R, El Yacoubi S, Fontaine A, Lupera P. A novel approach for detecting error measurements in a network of automatic weather stations. International Journal of Parallel, Emergent and Distributed Systems. 2022 Jan 7:1-8.
    DOI  |   Google Scholar
  10. Al Rakib, MA, Rahman. MM, Abbas, FI. Dry and Wet Waste Segregation and Management System. European Journal of Engineering and Technology Research, 2021;6.5: 129-133.
    DOI  |   Google Scholar
  11. Bhuiyan GM, Abbas. FI. Local minimum in effective pair potentials: Pseudopotential theory revisited. Cornell University Library, arXiv preprint arXiv:1710.07931, 2017.
     Google Scholar
  12. Islam M, Ghosh RC, Abbas FI, Bhuiyan GM. Effects of interionic pair interactions on atomic transport properties of liquid Al. Indian Journal of Physics, 2021: 1-10.
     Google Scholar
  13. Abbas FI, Bhuiyan GM. Critical Properties of Segregation for Al1- xBix Liquid Binary Alloys. Journal of the Physical Society of Japan, 2020; 89(11) :114004.
    DOI  |   Google Scholar
  14. Dubinin NE, Bhuiyan GM, Abbas FI. Effective Wills–Harrison Pair Interaction in Liquid Au. Russian Metallurgy (Metally), 2019; 8:835-837.
    DOI  |   Google Scholar
  15. Bhuiyan GM, Abbas FI. Local minimum in pair potentials of polyvalent metals: A limitation of pseudopotential theory. International Journal of Modern Physics B, 2019; 33(7).
    DOI  |   Google Scholar
  16. Abbas FI, Bhuiyan GM. A study of thermodynamics of mixing for Al1-xSnx liquid binary alloy. Journal of non-crystalline solids, 2018;481:391-396.
     Google Scholar
  17. Abbas FI, Bhuiyan GM. Energy of mixing and entropy of mixing for CuxAl1-x liquid binary alloys, arXiv preprint arXiv:1607.05827, 2016.
     Google Scholar
  18. Rakib AA, Rahman MM, Rahman MA, Chakraborty S, Shawon MMAS, Abbas FI. IoT based Controlling of Power Grid. European Journal of Engineering and Technology Research, 2021; 6(6): 54–57. https://doi.org/10.24018/ejeng.2021.6.6.2579.
    DOI  |   Google Scholar
  19. Rakib AA, Rahman MM, Rana S, Islam MS, Abbas FI. GSM Based Home Safety and Security System. European Journal of Engineering and Technology Research, 2021; 6(6), 69–73. https://doi.org/10.24018/ejeng.2021.6.6.2580.
    DOI  |   Google Scholar
  20. Ahmad S, Abbas FI. Design of a Compact Simple Structural Dual-band Patch Antenna for Wireless On-body Medical and Sports Devices. 2021 2nd International Conference on Robotics, Electrical and Signal Processing Techniques (ICREST), IEEE, 2021: 577-581.
    DOI  |   Google Scholar
  21. Rakib AA, Mahamud MS, Zishan MSR, Abbas FI. An Arduino Based Smart Hand Gloves for Load Control and Physician Notification. In 2021 International Conference on Automation, Control and Mechatronics for Industry 4.0 (ACMI); 2021. https://doi.org/10.1109/acmi53878.2021.9528260.
    DOI  |   Google Scholar
  22. Rakib AA, Rahman MM, Samad M, Islam MS, Rahman MA, Abbas FI. Low-Cost Pulmonary Ventilator for Patient Monitoring for Covid-19 Disease. European Journal of Engineering and Technology Research, 2021; 6(6): 154–159. https://doi.org/10.24018/ejeng.2021.6.6.2610.
    DOI  |   Google Scholar
  23. Rakib A, Abdullah M, Rahman MM, Abbas FI. A Meandered Line Patch Antenna at Low Frequency Range for Early-Stage Breast Cancer Detection. Indonesian Journal of Electrical Engineering and Informatics (IJEEI), 2021; 9.3: 662-674.
    DOI  |   Google Scholar
  24. Rakib A, Abdullah M, Rahman MM, Abbas FI. Smart Wheelchair with Voice Control for Physically Challenged People. European Journal of Engineering and Technology Research, 2021; 6.7: 97-102.
    DOI  |   Google Scholar
  25. Rakib MA, Rahman MM, Anik MS, Masud FA, Rahman MA, Islam S, Abbas FI. Arduino Uno Based Voice Conversion System for Dumb People. European Journal of Engineering and Technology Research. 2022 Apr 11;7(2):118-23.
     Google Scholar
  26. Rakib MA, Rahman MM, Uddin S, Anik MS, Talukder AH, Abbas FI. Fingerprint Based Smart Home Automation and Security System. European Journal of Engineering and Technology Research, 2022 Apr 18;7(2):140-5.
    DOI  |   Google Scholar
  27. Rakib MA, Rahman MM, Anik MS, Masud FA, Islam S, Rahman MA, Chakraborty S, Abbas FI. Arduino Based Efficient Energy Storage Systems Using Solar and Wind Power. European Journal of Engineering and Technology Research, 2022 Apr 15;7(2):134-9.
    DOI  |   Google Scholar
  28. Rakib MA, Rahman MM, Anik MS, Masud FA, Rahman MA, Hossain MS, Abbas FI. Fire Detection and Water Discharge Activity for Fire Fighting Robots using IoT. European Journal of Engineering and Technology Research, 2022 Apr 13;7(2):128-33.
    DOI  |   Google Scholar
  29. Rakib MA, Rahman MM, Anik MS, Masud FA, Rahman MA, Islam S, Abbas FI. Arduino Uno Based Voice Conversion System for Dumb People. European Journal of Engineering and Technology Research. 2022 Apr 11;7(2):118-23.
    DOI  |   Google Scholar
  30. Rakib MA, Rahman MM, Hossain MD M, Rahman MA, Samad M, Abbas FI. Induction Motor Based Speed and Direction Controller. European Journal of Engineering and Technology Research, 2022 November 11;7(6):82-86.
    DOI  |   Google Scholar
  31. Rakib MA, Rahman MM, Hossain MD M, Rahman MA, Samad M, Abbas FI. Smart Agriculture Robot Controlling using Bluetooth. European Journal of Engineering and Technology Research, 2022 November 11;7(6):77-81.
    DOI  |   Google Scholar
  32. Abbas FI, Bhuiyan GM. A study of thermodynamics of mixing for Al1-xZnx liquid binary alloy. Physica B: Condensed Matter, 2022; 481:414365.
    DOI  |   Google Scholar


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