Implementation of temperature and humidity monitoring system in wooden warehouse based on distance and access location assessment
Main Article Content
Abstract
Indonesia is the largest furniture exporter in the world. This business will continue to grow because Indonesia has abundant wood raw materials. These wood raw materials must be stored in a good wooden warehouse because the bad warehouse conditions will cause physical damage to the wood. This study designed a temperature and humidity monitoring system in a miniature wooden warehouse based on Internet of Things (IoT) technology. The test location was carried out at 5 locations. The length of test time i.e. 8 hours. Based on testing, data are displayed in app.microthings.id website for access location of Medan Selayang, the max. temperature was 26.4oC and the max. humidity was 68.8%. For access location of Medan Baru on Berdikari road, the max. temperature was 26.4oC and the max. humidity was 68.8%. For access location of Medan Johor, the max. temperature was 25.4oC and the max. humidity 68.1%. For access location of Medan Baru on Jamin Ginting Road, the max. temperature was 25.1oC and the max. humidity was 68.3%. For access location of Medan Baru on Universitas road, the max. temperature was 24.7oC and the max. humidity was 69%. These data are compared to data from A-TH3 sensor. There is the difference and latency between them. The highest of latency occured in Medan Johor District about 10 second
Downloads
Article Details
Brun, G. (2023). When Wood Cladding Degenerates: Lessons on durability from traditional wood claddings after long weathering in real conditions. FormAkademisk, 16(4). https://doi.org/10.7577/formakademisk.5401
Candelier, K., & Dibdiakova, J. (2021). A review on life cycle assessments of thermally modified wood. In Holzforschung (Vol. 75, Issue 3). https://doi.org/10.1515/hf-2020-0102
de FARIA, M. C. G., Silva Neto, C. de M. e., Lima, P. A. F., Chagas, M. P., Tomazello Filho, M., & Sette Junior, C. R. (2020). Brazilian cerrado species: Wood characteristics. Bioscience Journal, 36(4). https://doi.org/10.14393/BJ-v36n4a2020-48044
Ding, J., Nemati, M., Ranaweera, C., & Choi, J. (2020). IoT connectivity technologies and applications: A survey. IEEE Access, 8. https://doi.org/10.1109/ACCESS.2020.2985932
Ermawati, E. (2020). Waste and Accurate Management of Raw Material Inventory in Wood Companies. Wiga?: Jurnal Penelitian Ilmu Ekonomi, 10(1). https://doi.org/10.30741/wiga.v10i1.517
Hakiki, G. F., & Jakaria, R. B. (2023). Integration of Economic Order Quantity (EOQ) Method and Min-Max Stock Method in Controlling Raw Material Inventory in The Furniture Industry. Procedia of Engineering and Life Science, 4. https://doi.org/10.21070/pels.v4i0.1427
Inegbedion, H., Eze, S., Asaleye, A., & Lawal, A. (2019). Inventory management and organisational efficiency. Journal of Social Sciences Research, 5(3). https://doi.org/10.32861/jssr.53.756.763
Janice Carysa Siahaya, P. N. (2022). International Shopping Environment Variables To Increase Customer Satisfaction And Repurchase Intention Of Furniture Store In Indonesia. Journal of Economics, Finance And Management Studies, 05(03). https://doi.org/10.47191/jefms/v5-i3-33
Jirouš-Rajkovi?, V., & Mikle?i?, J. (2021). Enhancing weathering resistance of wood—a review. In Polymers (Vol. 13, Issue 12). https://doi.org/10.3390/polym13121980
Khademibami, L., & Bobadilha, G. S. (2022). Recent Developments Studies on Wood Protection Research in Academia: A Review. In Frontiers in Forests and Global Change (Vol. 5). https://doi.org/10.3389/ffgc.2022.793177
Kittang, D., & Bye, M. (2023). Managing Urban Heritage - A Case Study of the Warehouses in Kjøpmannsgata, Trondheim, Norway. Planning Practice and Research, 38(3). https://doi.org/10.1080/02697459.2019.1624441
Krugly, E., Pitak, O., Ciuzas, D., Tichonovas, M., Stasiulaitiene, I., Prasauskas, T., Kliucininkas, L., & Martuzevicius, D. (2022). Removal of VOCs from wood processing ventilation air by advanced oxidation gas-to-particle prototype system. Process Safety and Environmental Protection, 161. https://doi.org/10.1016/j.psep.2022.03.043
Kuptz, D., & Hartmann, H. (2021). Prediction of air pressure resistance during the ventilation of wood chips as a function of multiple physical fuel parameters. Biomass and Bioenergy, 145. https://doi.org/10.1016/j.biombioe.2020.105948
Lemaire-Paul, M., & Foruzanmehr, M. R. (2023). The study of physico-mechanical properties of SiO2-impregnated wood under dry and saturated conditions. Wood Science and Technology, 57(5). https://doi.org/10.1007/s00226-023-01492-4
Lopes, E. D., Gonçalves, J. F., Marques, A., Martins, N. de S., Pena, C., & de Laia, M. L. (2023). Physical and chemical properties of wood from Eucalyptus and Corymbia clones in different planting densities. Ciencia Florestal, 33(2). https://doi.org/10.5902/1980509864965
Maiti, R., Parra, A. C., & Rodriguez, H. G. (2016). Wood characteristics. In Autoecology and ecophysiology of woody shrubs and trees. https://doi.org/10.1002/9781119104452.ch7
McConnell, T. E., Vanderschaaf, C. L., & Tanger, S. M. (2019). Potential Changes to Louisiana Hardwood Timber Industry Economic Contributions following Emerald Ash Borer (EAB) Invasion: An Input-Output Approach. Journal of Economic Entomology, 112(6). https://doi.org/10.1093/jee/toz212
Özgenç, Ö., Bilici, E., Durmaz, S., Sö?ütlü, C., & Emik, S. (2022). Enhancing weathering durability of pre-protected and unprotected wood by using bark extracts as natural UV absorbers in waterborne acrylic coating. Journal of Coatings Technology and Research, 19(1). https://doi.org/10.1007/s11998-021-00528-3
Park, C. H., Lee, K. H., & Kim, S. C. (2022). Speicies Identification and Dating for Wooden Warehouse Excavated at Baengnyeongsanseong in Geumsan, Korea. Journal of Conservation Science, 38(3). https://doi.org/10.12654/jcs.2022.38.3.02
Pathmudi, V. R., Khatri, N., Kumar, S., Abdul-Qawy, A. S. H., & Vyas, A. K. (2023). A systematic review of IoT technologies and their constituents for smart and sustainable agriculture applications. Scientific African, 19. https://doi.org/10.1016/j.sciaf.2023.e01577
PURWANTO, A., Asbari, M., & Santoso, P. B. (2019). Can ISO 38200:2018 Wood and Wood Based Product Chain of Custody Increase Businesss Competitiveness of Wood Industries in West Java?? Jurnal Hutan Dan Masyarakat, 11(2). https://doi.org/10.24259/jhm.v11i2.8358
Saini, J., Dutta, M., & Marques, G. (2020). Indoor air quality monitoring systems based on internet of things: A systematic review. In International Journal of Environmental Research and Public Health (Vol. 17, Issue 14). https://doi.org/10.3390/ijerph17144942
Salih, H. S., Ghazi, M., & Aljanabi, M. (2023). Implementing an Automated Inventory Management System for Small and Medium-sized Enterprises. Iraqi Journal for Computer Science and Mathematics, 4(2). https://doi.org/10.52866/ijcsm.2023.02.02.021
Saputro, F. wisnu. (2022). Contribution of the Furniture Industry in Sukoharjo Regency and Steps to Facing the Threat of an Economic Recession at the End of the Covid-19 Pandemic Era. Proceeding of International Conference on Science, Health, And Technology. https://doi.org/10.47701/icohetech.v3i1.2188
Serhani, M. A., El Kassabi, H. T., Ismail, H., & Navaz, A. N. (2020). ECG monitoring systems: Review, architecture, processes, and key challenges. In Sensors (Switzerland) (Vol. 20, Issue 6). https://doi.org/10.3390/s20061796
Shanmugapriya, M. K. (2023). WAREHOUSE MANAGEMENT AND INVENTORY CONTROL. International Scientific Journal of Engineering and Management, 02(03). https://doi.org/10.55041/isjem00217
Xu, J., Gu, B., & Tian, G. (2022). Review of agricultural IoT technology. In Artificial Intelligence in Agriculture (Vol. 6). https://doi.org/10.1016/j.aiia.2022.01.001
Yuvina, Mardiana, & Zumhari. (2024). Implementation of A-TH3 Transmitter Sensor for Temperature and Humidity Monitoring System in Furniture Warehouse. International Journal of Research in Vocational Studies (IJRVOCAS), 3(4). https://doi.org/10.53893/ijrvocas.v3i4.256

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.