The State of the Art of Cyber-Physical System for Monitoring and Tracking in Maritime and Fisheries Sectors
State of the Art Sistem Siber-Fisik untuk Pemantauan dan Penelusuran Jejak di Sektor Maritim dan Perikanan
Abstract
This article presents the state of the art of research and publications regarding cyber-physical systems which include theory and working systems as well as applications in the maritime and fisheries fields. The literature collection method is based on keywords sourced from books, dissertations and theses, scientific articles, and website pages. The results presented in the form of descriptions and illustrations based on work systems that include construction, communication, computation and control. This review is important to increase a comprehensive understanding of the concept and implementation of cyber-physical systems in the maritime and fisheries sector.
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Asosiasi Pengelolaan Rajungan Indonesia. (n.d) apri.or.id: 2021. TREKFish! Where do Fisherman Catch the Blue Swimming Crab. https://www.apri.or.id/trekfish-where-do-fisherman-catch-the-blue-swimming-crab/.
Bachtiar MI., Hidayat R., Anantama R. 2022. Internet of Things (IoT) Based Aquaculture Monitoring System. MATEC Web of Conferences. 372: 04009. Retrieved 10 June 2024, from https://doi.org/10.1051/matecconf/202237204009
Buyya R., Dastjerdi V. 2016. Internet of Things: Principle and Paradigms. Cambridge: Elsevier. ISBN: 978-0-12-805395-9
Bohara K., Yadav AK., Joshi P. 2022. Detection of Fish Pathogens in Freshwater Aquaculture Using eDNA Methods. Retrieved 7 June 2024, from https://www.mdpi.com/1424-2818/14/12/1015
Charzon. 2019. Cyber-Physical System: Remote Control Era Revolusi Industri 4.0. Retrieved 7 June 2024, from DOI: 10.31219/osf.io/yw5jg
Clemente D. 2010. The Verification Research, Training and Information Centre. Chapter 10: Fundamentals of cyber security. 163-164. Retrieved 10 June 2024, from https://www.vertic.org/media/assets/VI%202015/VI%20Chapter%2010.pdf
Frank R. 2013. Understanding Smart Sensor. Boston: US Library of Congress. 1-2, 6.
Pola G., Di Benedetto MD. 2019. Control of Cyber-Physical-Systems with logic specifications: A formal methods approach. Annual Reviews in Control. 47(1): 178-192.
Hunter G., Stetter J., Hesketh P., Liu CC. 2012. Smart Sensor Systems. NATO Science for Peace and Security Series B: Physics and Biophysics. 29. doi: 10.1007/978-94-007-4119-5_19
IntechOpen. Industry 4.0 Current Status and Future Trends. London: Intechopen Limited. Page 3. https://library.oapen.org/bitstream/id/fa28a2ab-2770-4c5b-b756-c01c7e4c295d/external_content.pdf
Jahromi AA., Kundur D. Fundamentals of Cyber-Physical Systems. Chapter 2: 11-17. University of Leeds. Switzerland: Springer. Retrieved 7 June 2024, from https:doi.org/10.1007/978-3-030-41560-0_1
Jamwal A., Agrawal R., Manupati VK., Sharma M., Varela L. 2020. Development of cyber physical system based manufacturing system design for process optimization. IOP Conf. Series: Materials Science and Engineering, 1-13. Romania: Advanced Concept in Mechanical Engineering, ACME.
Jaya I., Iqbal M., Glugah M., Tri A. Laporan Hasil Observasi TREKfish Kegiatan Penangkapan Rajungan di Perairan Rembang, Pamekasan Dan Pamandati. (2019). Laporan Teknis. Bogor: PT Panrita. https://fisheryprogress.org/sites/default/files/documents_actions/LapTek-PNJ-01-2019.pdf
Kamal R. 2017. INTERNET OF THINGS: Architecture and Design Principles. Chennai: McGraw Hill Education (India) Private Limited. ISBN-13: 978-93-5260-523-1
Kementerian Kelautan dan Perikanan. 2019. SALMON: Aktivasi Lacak dan Monitoring Transmitter SPKP Secara Online. https://spkp.kkp.go.id/salmon/
Kementerian Kelautan dan Perikanan. 2021. https://kkp.go.id/djpsdkp/artikel/294 31-kkp-luncurkan-salmon-untukperkuat- pemantauan-kapalperikanan
Kementerian Kelautan dan Perikanan. 2021. PermenkKP no 23 2021 Retrieved 9 June 2024 https://jdih.kkp.go.id/peraturan/ed818-permen-kp-23-tahun-2021.pdf
Lambert TR. 2017. Microcontroller and Embedded Systems. Auburn University: Samuel Ginn College of Engineering. 4 https://www.eng.auburn.edu/~dbeale/MECH4240 50/Introduction%20to%20Microcontrollers%20and%20Embedded%20Systems.pdf
Law of the Republic of Indonesia Number 31 Of 2004 On Fisheries. https://www.peraturan.go.id/files2/uu-no-31-tahun-2004_terjemah.pdf
Lee EA., Seshia SA. 2017. Introdustion to Embedded System: A Cyber-Physical System Approach. Massachusetts: MIT Press.
Manoj M., Rajan R. 2021. Precision Aquaculture Using Iot & Machine Learning Techniques. Agpe The Royal Gondwana Research Journal of History, Science, Economic, Political and Social Science. 02(01). 105. ISSN (P): 2582:8800
Maritime Survey. (n.d.) maritime.survey.fr: Maritime Survey. https://www.maritime-survey.fr/ers-electronic-recording-and-reporting-system-21.html
MDPI. 2020. Annual Report. Denpasar: Yayasan Masyarakat dan Perikanan Indonesia. Retrieved 7 June 2024, from https://mdpi.or.id/wp-content/uploads/4.Resources/b.Reports/REPORT-Annual-Report-2020-EN.pdf
Mendo T., Colilles AM., Stounder J., Glemarec G., Egekvist J., Mugerza E., Rufino M., Swift R., James M. 2024. A workflow for standardizing the analysis of highly resolved vessel tracking data. ICES Journal of Marine Science. doi: http://doi.org/10.1093/icesjms/fsad209
Mois G., Folea S., Sanislav T., Miclea L. 2015. Communication in Cyber-Physical Systems. 19th International Conference on System Theory, Control and Computing (ICSTCC). 303 & 305. doi: 10.1109/ICSTCC.2015.7321310
Montagny S. 2021. LoRa-LoRaWan and Internet of Things for Beginners: A Low Power, Long Range, Wireless Technology. Universite Saovoie Mont Blanc. 9. Retrieved 10 June 2024, from https://www.univ-smb.fr/lorawan/wp-content/uploads/2022/01/Book-LoRa-LoRaWAN-and-Internet-of-Things.pdf
Morsi I., Zaghloul M., Alfiky M. 2015. Wireless and Controlling Marine Navigation Parameters. Applies Mechanics and Materials. ISSN: 1662-7482. 743(157). 1. doi: 10.4028/scientific.net/AMM.743.157. Trans Tech Publication Ltd, Switzerland.
Nardelli PHJ. 2022. Cyber-Physical System (Theory, Methodology, and Applications). New Jersey: IEEE Press. ISBN: 9781119785163
National Data Buoy Center. (n.d). ndbc.noaa.gov: National Oceanic and Atmospheric Administration. https://www.ndbc.noaa.gov/
Natsir M., Ardianto R., Puspasari R., Wada. 2022. M. Application of ICT to Support Sustainable Fisheries Management: Bali Sardine Fishery, Indonesia. Journal of Information Processing. 30(0). Retrieved 10 June 2024, from https://10.2197/ipsjjip.30.422
Nazzla R. 2016. Prototipe Sistem Pelacak Kapal Nelayan Pancing Tradisional Secara Otomatis Menggunakan Visualisasi Berbasis Web (Theses, Bogor Agricultural University (IPB)).
Nazzla R., Hestirianoto T., Pujiyati S. 2023. Prototype Testing of Automatic Vessel Tracking System using Web-Based Visualization. PELAGICUS, 3(2): 61-75.
Offshore sensing as. 2024. http://www.sailbuoy.no/technology
Otterå H., Wathne JA., Fuglebakk E., Slotte A., Svendsen BV., Vølstad JH. 2023. The Norwegian catchsampling lottery is a novel probabilistic survey method for at-sea sampling in pelagic fisheries. FisheriesResearch, 260(106584): 1-13.
Perlovsky LI., Shkodyrev VP. 2020. Cyber Physical System and Control: Physic of Mind - A Cognitive Approach to Intelligent Control Theory. Switzerland: Springer. https://doi.org/10.10007/978-3-030-34983-7
Pandu P. 2020. TREKfish Bantu Penelusuran Jejak Penangkapan Ikan. Retrieved 7 June 2024, from https://www.kompas.id/baca/ilmu-pengetahuan-teknologi/2020/09/21/trekfish-bantu-penelusuran-jejak-penangkapan-ikan.
Putri R.S., Jaya, I., Pujiyati, S., Agus S, B., & Palo, M. 2024.Trekfish in tracing the paths of flying fish roe in the Makassar Strait. BIO Web of Conferences ICMS. 106(01002): 3-5. Retrieved 7 June 2024, from https://doi.org/10.1051/bioconf/202410601002
Rahman A., Akter S. Khan MM., Rhaman K. 2019. Relation between aquaculture with fish disease and health management: A review note. Bangladesh J. Fish. 31: 253–260.
Rahmat A. 2020. Analisis Kinerja Fotobioreaktor pada Kultivasi Mikroalga dengan IOTs (Internet of Things) (Doctoral dissertation, IPB (Bogor Agricultural University)).
Rahmat A., Jaya I., Hestirianoto T., Jusadi D., Kawaroe M. 2020. Design a Photobioreactor for Microalgae Cultivation with the IOTs (Internet of Things) System.
Rodrigues J., Stojmenović I. 2016. Cyber-physical systems: from theory to practice. Boca Raton: CRC Press.
Raisin SN., Jamaludin J., Rahalim FM., Jamal FAM., Zaini NAH., Naeem B. Cyber-Physical System (CPS) Application-A REVIEW. REKA ELKOMIKA: Jurnal Pengabdian kepada Masyarakat. 1(2): 52. ISSN(e): 2723-3243. https://doi.org/10.26760/rekaelkomika.v1i2
Rukavina I. 2021. Cyber-physics intrinsic modelling for smart systems. Theses. Mechanical engineering: Université de Technologie de Compiègne
Russel D. 2010. Introduction to Embedded System Using ANSI C and the Arduino Development Environment. Morgan & Claypool Publishers. doi: 10.2200/S00291ED1V01Y201007DCS030
Saldivar AAF., Zhan ZH., Chen WN., Zhang J. 2015. Industry 4.0 with Cyber-Physical Integration: A Design and Manufacture Perspective. Proceedings International Conference on Automation & Computing.
Sharma D., Kumar R. 2021. Smart Aquaculture: Integration of physical sensors, biosensors, and Artificial Intelligence. Biosensors in Agriculture: Recent Trends and Future PerspectivesChapter: 21. India: Springer. Retrieved 10 June 2024, from doi: 10.1007/978-3-030-66165-6_21
Taha WM., Taha AEM., Thunberg J. 2021. Cyber-Physical System: A Model-Based Approach. Switcherland: Springer
USNA. 2017. The Coastal Kayak Autonomous Surface Vehicle (ASV) Version 2.0. https://www.usna.edu/Oceanography/_files/images/Research%20Posters/Ma%202018.
Vermesan O. 2024. Internet of Things and Cyber-Physical Systems. Retrieved 10 June 2024, from https://www.sintef.no/en/digital/departments-new/communication-systems/internet-of-things-and-cyber-physical-systems/
Vo T., Ko H., Huh J., Kim Y. 2021. Overview of Smart Aquaculture System: Focusing on Applications of Machine Learning and Computer Vision. 10(22). Retrieved 10 June 2024, from https://doi.org/10.3390/electronics10222882
Wiener N. 1948. Cybernetics: Or Control and Communication in the Animal and the Machine. Cambridge: Librairie Hermann & Cie, Paris, and MIT Press. 1 & 5