DESIGN AND IMPLEMENTATION OF A MONITORING SYSTEM FOR DVOR EQUIPMENT STATUS USING LABVIEW
DOI:
https://doi.org/10.52989/jaet.v6i2.273Kata Kunci:
air navigation, dvor, labview, monitoring, real-time, rs-232Abstrak
The Doppler VHF Omnidirectional Range (DVOR) is a critical air navigation system that provides aircraft with azimuth information based on the Doppler effect. Monitoring of DVOR transmitter status at many facilities still relies on manual inspection or direct on-site intervention. This study designed and implemented a real-time DVOR status monitoring system in LabVIEW, integrated with RS-232 serial communication, and tested it on a THALES 432 DVOR at the CNS Laboratory of Politeknik Penerbangan Indonesia Curug. The system acquires serial data, parses the 5th byte of each data frame to classify the equipment status as Normal, Warning, or Alarm, and displays the results via color-coded LED indicators and a Waveform Chart, while logging timestamped records to an Excel file. Five functional tests across all three status conditions produced results fully consistent with the DVOR RCMS reference display, confirming the system's accuracy and reliability for real-time DVOR status monitoring.
Unduhan
Referensi
Abrar, R., Fatonah, F., Dayanthi, A. K., & Syahputra, M. E. (2024). Analysis of Corrective Maintenance Monitor CCA Tool DVOR Selex Type-1150A. Journal of Airport Engineering Technology (JAET), 4(2), 95–100.
Abuhassna, H., Alnawajha, S., Awae, F., Adnan, M., & Edwards, B. I. (2024). Synthesizing technology integration within the Addie model for instructional design: A comprehensive systematic literature review. Journal of Autonomous Intelligence, 7(5), 1–28.
Al-Ma’ruf, H. B., & Tawakal, I. A. (2022). Rancangan Monitoring Parameter Dvor Menggunakan Rtl Sdr Secara Online. Prosiding Seminar Nasional Vokasi Penerbangan, 1(01), 74–87.
Ambarsari, N. A., & Oktaviyan, F. R. (2021). Meningkatkan Layanan Navigasi Udara dengan Menggunakan Performance Based Navigation (PBN). Jurnal Manajemen Dirgantara, 14(1), 121–130.
Dewi, N. N. M. D. D. (2024). Perbaikan kerusakan supervision b pada amsc merek elsa di perum lppnpi cabang denpasar. Journal of Engineering and Transportation, 1(2).
Eibert, T. F., Punzet, S., Mittereder, T., Faul, F. T., & Paulus, A. H. (2023). UAV-based near-field measurements at a Doppler very high frequency omnidirectional radio range. 2023 17th European Conference on Antennas and Propagation (EuCAP), 1–5.
Istoni, R., Chan, Y., Hasanah, N., Isniah, S., Sumartono, B., Syofian, S., & Setiyaningsih, T. (2025). Overview of LabVIEW as a Graphical Programming Tool for Developing Industrial Technology Proficiency. Jurnal Pengabdian Teknologi, Ekonomi Dan Humaniora, 3(1), 5–8.
Kalaivani, R., Sampooranam, K. P., Balamurugan, V. M., Chandru, N., Cipiraj, R. P., & Gokulakrishnan, G. S. (2025). LabVIEW based Patient Monitoring System. 2025 5th International Conference on Trends in Material Science and Inventive Materials (ICTMIM), 1711–1715.
Kinanti, A. W. S., Pamungkas, W., & Ni’Amah, K. (2025). Azimuth Detection of Doppler VHF Omnidirectional Range (DVOR) Signal Based on Software Defined Radio. 2025 12th International Conference on Electrical Engineering, Computer Science and Informatics (EECSI), 791–797.
Kurniawan, Y., & Mulia, W. (2022). Pengaruh Pathloss Dan Redaman Power Link Budget Terhadap Efek Doppler Pada Antena Dvor. J. Pendidik. Sains Dan Komput, 2(2), 2476–2809.
Limbong, F. H., Taufiq, T., & Bintoro, A. (2024). System monitoring of solar power plant using NODE MCU ESP8266 based on IOT. Journal Geuthee of Engineering and Energy, 3(2), 84–95.
Nugraha, S., & Caesar, A. T. (2016). Analisis Kinerja Sistem Doppler VHF Omnidirectional Range dan Distance Measuring Equipment pada Navigasi Penerbangan. Jurnal Sustainable: Jurnal Hasil Penelitian Dan Industri Terapan, 5(2), 6–10.
Samkria, R., Abd-Elnaby, M., Singh, R., Gehlot, A., Rashid, M., Aly, M. H., & El-Shafai, W. (2021). Automatic PV grid fault detection system with IoT and LabVIEW as data logger. Computers, Materials, & Continua, 69(2), 1709.
Sanjaya, M., & ElAarag, H. (2022). A Novel Application for Automating Security Risk Assessment and Mitigation of Bluetooth Infotainment Devices. Journal of Computing Sciences in Colleges, 38(5), 10–20.
Sembiring, A., Tharo, Z., & Siagian, P. (2025). Analysis of Aircraft Navigation Control Performance Improvement Based on Antenna Sideband DVOR Model 432. Proceedings of International Conference on Islamic Community Studies, 4250–4258.
Siddik, Y., Hussein, K. F. A., Esmaiel, H., El-Samie, F. E. A., & Mubarak, A. S. (2026). A low-power VHF transceiver for airborne SAR with enhanced buried object detection using chirped signal processing. Scientific Reports, 16(1), 3479.
Simamora, L., & Zainuddin, Z. (2021). Efektivitas Pengawasan Pelayanan Navigasi Penerbangan di Bandar Udara Internasional Sultan Hasanuddin Makassar. Journal of Lex Generalis (JLG), 2(9), 2574–2589.
Sivaranjani, S., Velmurugan, S., Kathiresan, K., Karthik, M., Gunapriya, B., Gokul, C., & Suresh, M. (2021). Visualization of virtual environment through labVIEW platform. Materials Today: Proceedings, 45, 2306–2312.
Spatioti, A. G., Kazanidis, I., & Pange, J. (2022). A comparative study of the ADDIE instructional design model in distance education. Information, 13(9), 402.
Xu, Z., Yang, R., Xue, Y., Liu, R., Cao, S., & Lang, S. (2025). Circuit Design and Implementation of a PCIe-Based USB-to-Quad-Port Dynamically Configurable RS-485/RS-232 Shared Interface with DTR-Controlled Electrical Standard Selection. 2025 6th International Conference on Computer Communication and Network Security (CCNS), 128–135.
Yulianti, D., Fauziah, I., Abdillah, H., & Yulianti, I. (2023). Desain Sistem Monitoring Flowmeter Komunikasi RS 232 Menggunakan Software Node-Red Pada Fuel Cell Electric Vehicle: Design of RS 232 Communication Flowmeter Monitoring System Using Node-Red Software for Fuel Cell Electric Vehicle. Jurnal Konversi Energi Dan Manufaktur, 115–123.
##submission.downloads##
Diterbitkan
Cara Mengutip
Terbitan
Bagian
Lisensi
Hak Cipta (c) 2026 Kevin Raflyfasya, Muhammad Arif Sulaiman , Havan Hakim

Artikel ini berlisensi Creative Commons Attribution-NonCommercial 4.0 International License.










_1.png)



