RANCANG BANGUN SISTEM PELACAK KENDARAAN MENGGUNAKAN GPS DAN GSM BERBASIS ARDUINO NANO

Muhammad Fadhurrahman, Elvan Yuniarti, Dewi lestari

Abstract


Vehicle theft rates in Bekasi City are still high. Only about 22.7% cases have been successfully solved. The main problem is hard to track vehicles because too many vehicles in the city of Bekasi. The aims of this research is to design and build a vehicle tracking system using GPS, GSM, Relay, and Arduino Nano. The test was performed by measuring the length of time it takes for GPS device to locks the signal satellite, receive and send a short message to vehicle’s owner. The result was succeeded in designing and building vehicle tracking system using GPS, GSM, and Arduino Nano with a relay as a support to make the vehicle stay in an off condition and can trigger an alarm sound so it can easily to find the location of the vehicle. GPS device has an average time delay of locking a signal for 196 seconds at daylight and 72 seconds at night with accuracy for amount 95.33%. Tracker device has an average time delay for sending message to user at 13.82 seconds for different mobile’s operator and 11.60 seconds for the same mobile’s operator with accuracy for amount 70.73%.


Keywords


Arduino Nano; GPS; GSM; Ionosphere; Vehicle Tracking System

References


1. Herwangi, Y., Syabri, I., & Kustiwan, I. (2015). Peran dan Pola Penggunaan Sepeda Motor Pada Masyarakat Berpendapatan Rendah di Kawasan Perkotaan Yogyakarta. Jurnal Perencanaan Wilayah Dan Kota, 26(3), 168.

2. Handayani, R. (2017). Analisis Dampak Kependudukan terhadap Tingkat Kriminalitas di Provinsi Banten. Jurnal Administrasi Publik, 8(2), 149–169.

3. IPDS BPS Kota Bekasi. (2018). Kota Bekasi Dalam Angka. Badan Pusat Statistik Kota Bekasi. 311.

4. IPDS BPS Kota Bekasi. (2018). Kota Bekasi Dalam Angka. Badan Pusat Statistik Kota Bekasi. 199.

5. Azzam, M. (2019). Kasus curanmor dilaporkan sepanjang Tahun 2018 di Kota Bekasi. Diakses pada 23 Juli 2019. URL: https://wartakota.tribunnews.com/2019/01/01/ terjadi - 154 - kasus - curanmor -dilaporkan-sepanjang-tahun-2018-di-kota-bekasi.

6. Soerbakti, Y., Syahputra, R. F., Saktioto, S., & Gamal, M. D. H. (2020). Investigasi kinerja antena berdasarkan dispersi, anomali metamaterial struktur heksagonal split ring resonator. Komunikasi Fisika Indonesia, 17(2), 74–79.

7. Rabbani, F. M., Yuniarti, E., & Al-Huda, M. (2020). Analisis sensor kapasitif pelat sejajar pada aplikasinya sebagai deteksi zat satu fasa dan multi fasa. Komunikasi Fisika Indonesia, 17(2), 62–67.

8. Febrianti, A., Hamdi, M., & Juandi, M. (2021). Analysis of non-destructive testing ultrasonic signal for detection of defective materials based on the Simulink Matlab Mathematica computation method. Science, Technology & Communication Journal, 1(2), 46-58.

9. Pertiwi, M., Muhammad, J., Farma, R., & Saktioto, S. (2020). Analysis of shallow well depth prediction: a study of temporal variation of GRACE satellite data in Tampan District-Pekanbaru, Indonesia. Science, Technology & Communication Journal, 1(1), 27–36.

10. Marzuki, M. I. & Irawan, B. (2017). Analisa propagasi gelombang continuous wave pada radio amatir di frequency 21 MHz. Jurnal Telekomunikasi dan Komputer, 7(2), 213.

11. Budi, P., Haritman, E. (2010). Modul Dasar Telekomunikasi. Jurnal Pendidikan Teknik Elektro. 1(1), 8–28.

12. Jiyo. (2012). Fenomena Cuaca Antariksa. Pusat Sains Antariksa LAPAN. 1(1).

13. Bakara, J. (2011). Perkembangan Sistem Satelit Navigasi Global dan Aplikasinya. Berita Dirgantara, 12(2), 39–40.

14. Prasetyaningsih, D. (2012). Partisipasi Indonnesia dalam pembahasan sistem satelit navigasi global (global navigation satellite system) dalam sidang uncopuoc. Berita Dirgantara, 13(4), 123–124.




DOI: http://dx.doi.org/10.31258/jkfi.18.1.5-11

Refbacks

  • There are currently no refbacks.


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

Indexing by:

  

 

Image