Design and Implementation of a Shunting Communication Voice Recorder at Tegal Station Using Visual Basic
DOI:
https://doi.org/10.71225/jstn.v1i1.39Keywords:
Alert communication, voice recorder, database, visual basicAbstract
Communication between the two is done using a handy talky. Communication between langsir officers and train travel organizers is one of the most influential communications in train operations. In (PM No. 45 of 2018) concerning the technical requirements of railway telecommunications equipment, it is stated that at least lansiran communication meets the operating system requirements, every conversation must be recorded. There is currently no recording device for alert communication at Tegal station, while the alert process at Tegal station occurs at least 8 times a day.In this study, an application was made to record the voice of the langsiran communication to record all communications made by the langsir officer and the train travel controller. By taking voice data from the handy talky which is used as a master, then it is connected using a series of interfaces via a cable jack on a PC that has installed a voice recording application for langsiran communication that has been made with Microsoft Visual Studio. The recorded data that has been obtained is processed and stored in a MySQL database with the phpMyAdmin interface.From the test results, the designed software can be run properly, can automatically record alert communication, the stored data can be searched based on the recording code and recording date, and the recorded recordings can be played back and show the recording time
References
Marselinus, M. (2016). Fire Alarm System Using Infrared and Temperature Sensors based on Arduino Uno. Department of Physics, Faculty of Science and Engineering, Nusa Cendana University.
Fraenkel, J. R., Wallen, N. E., & Hyun, H. H. (2012). How to design and evaluate education research (8th ed.). New York: McGraw Hill.
Haris, M. Yusrifar & Aryo Abdi Putra. (2017). Design of a Light Control System Based on an Arduino Uno R3 Microcontroller with a Sound Sensor. Makassar: Muhammadiyah University of Makassar, Faculty of Engineering.
Santoso, Hari. (2015). A practical guide to Arduino for beginners. www.elangsakti.com: Malang
Sadewo, D. N., & Wirawan, W. A. (2023, March). Maximum Power Tracking Photovoltaic Polycristalin and Monocrystalline Optimized with Algorithm Dual Axis Solar Tracking Using Four LDR Comparator Sensor. In International Conference on Railway and Transportation (ICORT 2022) (pp. 285-293). Atlantis Press.
Zaratul, Nisa, and Saputri. 2014. Voice recognition is applied to control electrical equipment based on Arduino Uno. Brawijaya University.http://repository.ub.ac.id/id/eprint/142674/
AJTekno, Turning on the lights with applause based on Arduino
Sunardi, S., Arifianto, T., Hartisa, A. L., Darmawan, A., & Wirawan, W. A. (2020). Perancangan Sistem Peringatan Longsor dan Deteksi Pergeseran Tanah Menggunakan Metode Telemetri. Jurnal Penelitian Transportasi Darat, 22(2), 123-130.
Wirawan, W. A., Aghastya, A., & Lailya, A. L. (2019). Modeling Of Atmega 2560 Microcontroller-Based Train Passenger Counter. Jurnal Perkeretaapian Indonesia (Indonesian Railway Journal), 3(1).
Abidi, Zainal. 2014. Backup power provider with inverter. INTEKNA Journal. Banjarmasin State Polytechnic
Rachman, N. F., Sunardi, S., Aghastya, A., Wirawan, W. A., & Putri, N. D. O. (2023, May). Simulation of early warning system in landslides and flooding with IoT. In AIP Conference Proceedings (Vol. 2592, No. 1). AIP Publishing.
Mulyati, Sri and Sumardi (2018). Internet of Things (IoT) on Gas Leak Detector Prototype Based on MQ-2 and SIM800L. Engineering Journal: Muhammadiyah University of Tangerang, Vol. 7, no. 2.
Sasmoko, Dani. (2021). Arduino and Sensors in DIY Arduino Projects. Semarang: Prima Agus Teknik Foundation.
Sugiyono. (2019). Quantitative, Qualitative, and R&D Research Methods. Bandung: Alphabet.
Sukmadinata, Nana Syaodih. (2009). Educational Research Methods. Bandung: Rosdakarya Youth.
Andri Hendrawan, S. S. (2021). Penyebab Kerusakan Electro MotorOil Max Pump pada Mesin Induk di KM. Dharma Kartika IX. Jurnal Saintara Vol.5 No.2, 28-35.
Happyanto, D.C., & Purnomo, M.H. (2014). Teknik kendali motor induksi tiga fasa : berbasis kecerdasan komputasional sebagai penggerak mobil listrik. Yogyakarta : Graha Ilmu.
Musyaffa, I. F. (2019). Monitoring Temperatur dan Getaran Motor Induksi 3 Phase Menggunakan Arduino Uno (Doctoral dissertation, Universitas Islam Indonesia).
Prayogo, D. (2019). Analisis Pengaruh Kerusakan Rotor Pada Motor Induksi 3 Phasa Dengan Metode Motor Current Signature Analysis (MCSA). Skripsi. Universitas Pamulang.
Rizeki, R., & Iwan, K. (2016). Monitoring Suhu Generator Berbasis Internet of Thing (IoT) Menggunakan Mikrokontroler NodeMCU Sebagai Implementasi ICT Pada Bisnis Pembangkitan Tenaga Listrik. Skripsi. Universitas Mercubuana. Jakarta.
Tugino, Harianto, Widian C. (2016). Rekayasa Peralatan Pendeteksi Dini Kerusakan Pada Motor Listrik Berbasis Komputer. STTNAS, Vol.1 No.1 (12-17)






