Studi Rancang Bangun Prototipe Kapal Pariwisata Listrik Katamaran Asimetris untuk Penyebrangan Pulau Penyengat sebagai Transportasi Laut Ramah Lingkungan

Authors

  • Adam Adriansyah Putra UNIVERSITAS MARITIM RAJA ALI HAJI (UMRAH)
  • Leo Anaris Sakti UNIVERSITAS MARITIM RAJA ALI HAJI (UMRAH)
  • Galuh Dea Tiara Shandy UNIVERSITAS MARITIM RAJA ALI HAJI (UMRAH)
  • Dimas Saputra UNIVERSITAS MARITIM RAJA ALI HAJI (UMRAH)
  • Anggara Setya Dharma UNIVERSITAS MARITIM RAJA ALI HAJI (UMRAH)

DOI:

https://doi.org/10.61132/jupiter.v3i5.1098

Keywords:

Catamaran, Electric Boat, Electric Propulsion, Marine Transport, Tourism

Abstract

The need for environmentally friendly marine transportation continues to increase, especially in tourist areas such as Penyengat Island, Tanjungpinang, Riau Islands. In the local context, the design of electric boats has not been widely developed for small islands in Indonesia, even though the potential and urgency for its application is very high. Geographical constraints, limited charging infrastructure, and a lack of technical data are the main obstacles. This research focuses on the design and construction of an electric-powered tourist boat prototype with an asymmetrical catamaran hull type as an effort to support a sustainable transportation system. The boat design applies an asymmetrical catamaran hull configuration to improve sailing stability and energy efficiency. The propulsion system is controlled via a wireless PS2 joystick integrated with an ESP32 microcontroller, supported by a 24V DC motor powered by lithium-ion batteries and solar panels as a supplement. Test results show that the boat can operate stably with remote control, good energy efficiency, and zero emissions during operation. Some technical challenges encountered include limited operational duration due to battery capacity and high sensitivity of electronic components to water exposure. Overall, this prototype has great potential for further development as an environmentally friendly alternative for maritime transportation system. The stable catamaran hull design provides advantages in terms of comfort and safety, especially in calm or shallow waters. The electric propulsion system used has proven to be efficient and responsive, supported by a remote control mechanism that is easy to operate via a wireless joystick

References

Adrian Pramuditya, I. M., Raka Agung, I. G. A. P., & Rahardjo, P. (2023). Rancang bangun alat uji periferal ESP32 DEVKIT V1 - DOIT 30 PIN. Jurnal SPEKTRUM, 10(4), 340. https://doi.org/10.24843/SPEKTRUM.2023.v10.i04.p39

Ananda Putra, F., Finawan, A., & Mauliza, Y. (2024). Rancang bangun alat pengutip brondolan sawit dengan menggunakan joystik berbasis mikrokontroler Arduino Uno. Jurnal Tektro, 8(2), 185–190.

Asih, M. S., Hasibuan, A. Z., & Syahputri, N. I. (2018). Pendingin otomatis akuarium menggunakan mikrokontroler. Jurnal Teknologi dan Ilmu Komputer Prima (JUTIKOMP), 1(1), 66–70. https://doi.org/10.34012/jutikomp.v1i1.327

Bratitsis, M., Panou, M., Papandreou, M., & Kyzalas, S. K. (2023). Electro-mobility in small islands. https://www.researchgate.net/publication/374948251

Brenna, M., Bucci, V., Falvo, M. C., Foiadelli, F., Ruvio, A., Sulligoi, G., & Vicenzutti, A. (2020). A review on energy efficiency in three transportation sectors: Railways, electrical vehicles and marine. Energies, 13(9), 2378. https://doi.org/10.3390/en13092378

Chrismianto, D., Berlian, A. A., & Sobirin, Y. (2014). Pengaruh variasi bentuk hull kapal catamaran terhadap besar hambatan total menggunakan CFD. Jurnal Teknologi Maritim, 11(2), 99–105.

Gunoto, P., Rahmadi, A., & Susanti, E. (2022). Perancangan alat sistem monitoring daya panel surya berbasis Internet of Things. SIGMA TEKNIKA, 5(2), 285–294. https://doi.org/10.33373/sigmateknika.v5i2.4555

Honaryar, A., Ghiasi, M., Liu, P., & Honaryar, A. (2021). A new phenomenon in interference effect on catamaran dynamic response. International Journal of Mechanical Sciences, 190, 106041. https://doi.org/10.1016/j.ijmecsci.2020.106041

Iamshchikov, E., Janutenienė, J., Mažeika, P., Mickevičienė, R., Villa, D., Zapnickas, T., & Djackov, V. (2025). Optimizing catamaran hull form for resistance reduction: Methodology and case study. Journal of Marine Science and Engineering, 13(6), 1160. https://doi.org/10.3390/jmse13061160

Julianto, R. I., Muttaqie, T., Adiputra, R., Hadi, S., Govinda Hidajat, R. L. L., & Prabowo, A. R. (2020). Hydrodynamic and structural investigations of catamaran design. Procedia Structural Integrity, 27, 93–100. https://doi.org/10.1016/j.prostr.2020.07.013

Khakim, L., Sulasmoro, A. H., & Afriliana, I. (2023). Alat peringatan volume septic tank dan netralisasi kadar sewer gas berbasis mikrokontroler dan teknologi panel surya. Jurnal Sistem Komputer, 12(1). https://doi.org/10.34010/komputika.v12i1.7538

Kiswantono, A., S, Y. A., & A, M. A. M. (2024). Fuzzy control innovation: Optimizing DC motor performance with solar energy. JTECS: Jurnal Sistem Telekomunikasi Elektronika Sistem Kontrol Power Sistem dan Komputer, 4(1), 31. https://doi.org/10.32503/jtecs.v4i1.4687

Kunicka, M., & Litwin, W. (2019). Energy demand of short-range inland ferry with series hybrid propulsion depending on the navigation strategy. Energies, 12(18), 3499. https://doi.org/10.3390/en12183499

Minak, G. (2023). Solar energy-powered boats: State of the art and perspectives. Journal of Marine Science and Engineering, 11(8), 1519. https://doi.org/10.3390/jmse11081519

Puji Cahyono, T., Hardianto, T. H., & Kaloko, B. S. K. (n.d.). Pengujian karakteristik baterai lithium-ion dengan metode fuzzy dengan beban bervariasi. Jurnal Teknik Elektro.

Rönnebrand, J. (2022). Development of an electric day boat concept. Chalmers University of Technology. www.chalmers.se

Santos, S. P., & Nugroho, R. M. W. (2021). Rancang bangun alat pintu geser otomatis menggunakan motor DC 24 V. Jurnal Ilmiah Elektrokrisna, 9(1). https://doi.org/10.24843/SPEKTRUM.2022.v09.i04.p4

Saputra, H. T., & Muhaimin, A. (2022). Robot pemindah benda dengan kendali joystick PS2 wireless berbasis Wemos. Jurnal Ilmu Komputer, 11(2). https://doi.org/10.33060/JIK/2021/Vol11.Iss2.280

Satoto, S. W., P, N. A., & Saputra, H. (2019). Perbandingan teknis ukuran utama dan hambatan kapal pada lambung kapal wisata Pulau Petong. Jurnal Teknologi dan Riset Terapan (JATRA), 1(1), 20–26. https://doi.org/10.30871/jatra.v1i1.1336

Sudiyono, Soim, S., & Arfianto, A. Z. (2018). Perancangan kapal wisata danau dengan sistem penggerak paddle wheel dan baterai (accu) sebagai sumber energi. Jurnal Teknologi Maritim, 1–10. https://doi.org/10.35991/jtm.v1i1.419

Downloads

Published

2025-09-22

How to Cite

Adam Adriansyah Putra, Leo Anaris Sakti, Galuh Dea Tiara Shandy, Dimas Saputra, & Anggara Setya Dharma. (2025). Studi Rancang Bangun Prototipe Kapal Pariwisata Listrik Katamaran Asimetris untuk Penyebrangan Pulau Penyengat sebagai Transportasi Laut Ramah Lingkungan. Jupiter: Publikasi Ilmu Keteknikan Industri, Teknik Elektro Dan Informatika, 3(5), 139–153. https://doi.org/10.61132/jupiter.v3i5.1098