Development of Device for Pressure Control System in a Freezer of Pressed-Plate Type
DOI:
https://doi.org/10.23960/jtep-l.v12i1.139-151Abstract
The process of freezing foodstuffs can be done by using a cold metal plate that is in contact with the frozen material (contact plate freezing). The magnitude of contact Force Compressive applied needs to be controlled so as not to damage the frozen material. The purpose of this study was to develop and evaluate the performance of a Force Compression control system on a contact plate freezer. The Force Compression control system was composed of a load cell mounted on a Force Compression device, connected to a set of controllers consisting of an HX711 module, ATM Mega Arduino and a computer using the Borland Delphi 7 language. The results showed that the developed system was able to control the compression process of the equipment by turning off voltage input of the motor when the specified setting point has been reached. The results of Force Compression values when the motor in off position for the setting points of 50, 100, 150, 200, 250, and 300 kg.m/s2 were 58.25, 110.25, 162.67, 213.83, 264.55, and 317.61 kg.m/s2, respectively. There was a difference that gradually increased with increasing setting point value, where the real Force Compression values when the motor off were higher than the setting point values. The relationship between real Force Compression and setting point Force Compression could be given in the form of a linear regression equation y = 1.06897x + 6.14667 with a value of R2 = 0.99, RMSE 1,53 and MAPE 11,75 %.
Keywords: Arduino, Control system, Force Compression, Force Compression plate, Setting point
References
Ariansya, A. (2018). Rancang bangun sistem pendingin ruangan menggunakan modul termoelektrik Piltier Tec-12706 berbasis microcontroller Arduino Uno. [Undergraduate Thesis], Jurusan Teknik Informatika Fakultas Sains dan Teknologi, Universitas Islam Negeri Alauddin, Makassar.
Aryawan, I.P.Y., Wijaksana, H., & Suarnadwipa, I.N. (2016). Study eksperimental performa pendingin ice bunker dengan kombinasi massa dry ice dan ice. Jurnal Ilmiah Teknik Desain Mekanika, 5(3), 1-5.
Bao, H.N.D., Arason, S., & Þórarinsdóttir, K.A., 2007. Effects of dry ice and superchilling on quality and shelf life of arctic charr (Salvelinus alpinus) fillets. International Journal of Food Engineering, 3(3), . https://doi.org/10.2202/1556-3758.1093
Basri, I.Y., & Irfan, D. (2018). Komponen Elektronika. Padang Sukabina Press, 175 pp.
Beier, S., 2006. Transport Phenomena. Bookboon.com.
Effendy, M., 2019. Pengetahuan Dasar Sistem Kendali, 1st ed. Surakarta: Muhammadiyah University Press, 326 pp.
Firdaus, R.M., Supriyo, B., & Suharjono, A. (2019). Electronic and GUI developtmen of roller brake tester. J. Phys.: Conf. Ser., 1273, 012070. https://doi.org/10.1088/1742-6596/1273/1/012070
Gupta, S., Giri, S., Srivastava, T., Agarwal, P., Sharma, R., & Agrawal, A. (2021). Smart refrigerator based on ‘Internet of Things.’ In: 2021 International Conference on Advance Computing and Innovative Technologies in Engineering (ICACITE). IEEE, Greater Noida, India, pp. 436–439. https://doi.org/10.1109/ICACITE51222.2021.9404612
Hastawan, A.F., Haryono, S., Utomo, A.B., Hangga, A., Setiyawan, A., Septiana, R., Hafidz, C.M., & Triantino, S.B. (2021). Comparison of testing load cell sensor data sampling method based on the variation of time delay. IOP Conf. Ser.: Earth Environ. Sci., 700, 012018. https://doi.org/10.1088/1755-1315/700/1/012018
Irwanto, B., Kabib, M., & Winarso, R. (2019). Rancang bangun sistem kontrol penimbangan tembakau dengan mikrokontroller Arduino Uno. Crankshaft, 2(2), 27-32. https://doi.org/10.24176/crankshaft.v2i2.3837
Jaysrichai, T. (2018). Load cells application for developing weight-bearing detection via wireless connection. The Open Biomedical Engineering Journal (TOBEJ), 12, 101–107. https://doi.org/10.2174/1874120701812010101
Khan, M.Y., & Mittal, A. (2017). Freezing of food products: A review. International Journal of Advance Research in Science and Engineering, 6(9), 353-358.
Lubis, Z., Wibowo, A., & Annisa, S. (2019). Metode baru pernacangan mesin pendingin mini menggunakan rangkaian variabel LM317 berbasis Arduino Uno (fokus hardware dan software). Buletin Utama Teknik, 15(1), 60-65.
Muchtar, H., & Sumanjaya, R. (2018). Control switch otomatis pada tegangan energi alternatif dan tegangan sumber PLN Menggunakan Raspberry Pi. Resistor, 1(2), 97-102. https://doi.org/10.24853/resistor.1.2.97-102
Muttalib, S.A., Bintoro, N., Karyadi, J.W, Saputro, A.D. (2021). Development of method and apparatus to speed up cooling process of fish products. The 8th ICETA International Conference on Engineering, Technology, and Industrial Application. 15-16 December 2021
Ogata, K. (1996). Teknik Kontrol Automatik. Jakarta : Erlangga, 470 pp.
Prasetyo, A., Wijaksana, H., Suarnadwipa, N. (2019). Studi eksperimental penggunaan dry ice untuk konfigurasi inline dengan rasio pengisian tube 50% terhadap performansi dew point cooling sistem. Jurnal Ilmiah Teknik Desain Mekanika, 9(1), 785-790.
Setiawati, D.A., Hakim, M.L., & Sukmawaty, S. (2020). Rancang bangun sistem pengendalian suhu ruang pengering hybrid tipe rak berputar berbasis mikrokontroler Arduino Mega. Jurnal Teknik Pertanian Lampung, 9(1), 1-9. https://doi.org/10.23960/jtep-l.v9i1.1-9
Setyadi, H.J., Taruk, M., Widagdo, P.P., & Pakpahan, H.S. (2017). Sistem kendali untuk monitoring alat bantu (light center, condesate tank and pump) studi kasus : PLTGU Tanjung Batu Kutai Kartanegara. Prosiding Seminar Ilmu Komputer dan Teknologi Informasi, 2(1), 390-394.
Shaleh, A.I., Bani, A.U., & Sudarsono, B.G. (2022). Design and manufacture of air pressure measuring instruments with Arduino microcontroller-based presure water sensors. Journal of Mathematics and Technology (MATECH), 1(1), 17–28.
Sinaga, F.O., Amdani, K., & Rajagukguk, J. (2019). Rancang bangun miniatur eskalator otomatis menggunakan sensor berat (load cell) berbasis mikrokontroler Atmega 2560. Einstein (e-Journal), 7(3), 15-21. https://doi.org/10.24114/einstein.v7i3.15164
Utama, Y., Widianto, Y., Sardjono, A., & Kusuma, H. (2018). Sistem Pengaturan Dasar. Mimika Baru, Papua: Aseni, 141 pp.
Yendri, D., Adrizal, Derisma, & Afif, H. (2020). Design of cow cattle weighing system technology and automatic giving feed. 2020 International Conference on Information Technology Systems and Innovation (ICITSI). IEEE, Bandung - Padang, Indonesia, 185–191. https://doi.org/10.1109/ICITSI50517.2020.9264977
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