Verifikasi Sensor Termokopel pada Furnace untuk Meningkatkan Akurasi Pemantauan Suhu di PT Krakatau Baja Konstruksi
Abstract
Accurate temperature monitoring in the furnace is an important element in the processing of steel metals at PT Krakatau Baja Construction. Type S thermocouple sensors are used to measure temperature by converting temperature changes into voltage signals. However, to ensure the accuracy of the readings, thermocouple performance verification is carried out periodically. This research aims to verify thermocouples in several furnace zones to increase the accuracy of temperature data in the Human Machine Interface (HMI) system. The verification process uses the Fluke 17 B+ tool and Universal Transmitter PR4116. The measurement results are compared with the reference table and HMI readings before and after verification. The results show that all thermocouples function well with the largest deviation of 23°C in Zone 2A before adjustment and the smallest deviation of 1°C in Zone 1. Verification succeeded in reducing the deviation, ensuring the reliability of the measurement system. This research confirms the importance of thermocouple verification to improve production efficiency and product quality, with recommendations for regular evaluation of the HMI system and temperature measurements.
Keywords
Full Text:
PDFReferences
Haikal, M. A., Herlambang, D. T., & Ali, M. (2021). Desain Optimasi PID Controller Pada Heating Furnace Temperature Menggunakan Metode Particle Swarm Optimization (PSO). ALINIER: Journal of Artificial Intelligence & Applications, 2(2), 77-82.
Sragarta, K. R., & Aribowo, D. (2023). Sistem Kendali Pusher Sebagai Pendorong Billet Pada Mesin Furnace Berbasis Plc Siemens S7-300. Infotronik: Jurnal Teknologi Informasi dan Elektronika, 8(2), 80-90.
Sragarta, K. R. (2024). Efektivitas Kendali PID Suhu Furnace Menggunakan Sensor Termokopel Tipe-S Untuk Pemanasan Baja. Jurnal Teknik Elektro dan Komputasi (ELKOM), 6(2), 225-233.
Indarwati, S., Respati, S. M. B., & Darmanto, D. (2019). Kebutuhan daya pada air conditioner saat terjadi perbedaan suhu dan kelembaban. Jurnal Ilmiah Momentum, 15(1).
Tengger, B. A., & Ropiudin, R. (2019). Pemanfaatan Metode Kalman Filter Diskrit untuk Menduga Suhu Udara. Square: Journal of Mathematics and Mathematics Education, 1(2), 127-132.
Sudaryanto, D. H. (2013). Study Perhitungan Range d/p Cell Transmitter Untuk Pengukuran Level Dengan Metode Dry Outside Leg Dan Wet Outside Leg. Swara Patra: Majalah Ilmiah PPSDM Migas, 3(1).
Utami, A. R. (2017). Verifikasi Metode Pengujian Sulfat Dalam Air dan Air Limbah Sesuai SNI 6989.20: 2009. Jurnal Teknologi Proses dan Inovasi Industri, 2(1), 19-25.
Wiguna, E. H., & Subari, A. (2017). Rancang bangun sistem monitoring ketinggian air dan kelembaban tanah pada penyiram tanaman otomatis dengan HMI (human machine interface) berbasis Raspberry pi menggunakan software Node-red. Gema Teknologi, 19(3), 1-6.
Hasibuan, M. P., Azmi, R., Arjuna, D. B., & Rahayu, S. U. (2023). Analisis pengukuran temperatur udara dengan metode observasi. Jurnal Garuda Pengabdian Kepada Masyarakat, 1(1), 8-15.
Hadziq, F. H., Repelita, T., & Saharani, M. (2024). Strategi Dalam Proses Wawancara Kerja. Jurnal Pemasaran Bisnis, 6(3).
DOI: http://dx.doi.org/10.33087/jepca.v8i1.120
Refbacks
- There are currently no refbacks.

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Journal of Electrical Power Control and Automation (JEPCA) |

