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Estimation of Fishing Ground Based on Distribution of Fishing Vessels and Oceanographic Factors in WPPNRI 573 Panggabean, Donwill; Sudarmo, Agnes Puspitasari; Anwar, Kasful; Jalil, Jalil; Nazzla, Rauzatul
Jurnal Kelautan dan Perikanan Terapan (JKPT) Vol 6, No 1 (2023): (Juni, 2023)
Publisher : Politeknik Ahli Usaha Perikanan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15578/jkpt.v6i1.12752

Abstract

Fisheries Management Area of Republic of Indonesia (FMARI) 573 has great potential and needs to be supported by complete and accurate information, especially fishing ground locations so that the fisheries sector can become better. This study aims to estimate the location of the fishing ground in the western of FMARI 573 based on the movement of fishing vessels carrying out fishing operations, as well as sea surface temperature (SST) conditions and chlorophyll-a concentrations. The data used is a 10 year time series of AQUA-MODIS and SNPP-VIIRS satellite images. Analysis of chlorophyll-a and SST using ArcGis, while estimation of fishing ground locations with overlay techniques between ship distribution with SST conditions and chlorophyll-a concentrations. The results showed that the average SST value was relatively higher during Transitional Season I compared to the other three seasons. The average seasonal chlorophyll-a concentration fluctuates, the maximum value occurs in the Western Season and the minimum in the East Season. The concentration and distribution of fishing vessels indicate fishing ground areas in Pangandaran waters and along the coast of Binuangeun waters and Palabuhan Ratu Bay. 
The State of the Art of Cyber-Physical System for Monitoring and Tracking in Maritime and Fisheries Sectors Nazzla, Rauzatul; Jaya, Indra; Rahmat, Ayi; Panggabean, Donwill; Panggabean, Yuniar Endri; Handoko, Dadang
Journal of Coastal and Deep Sea Vol 2 No 2 (2024): Journal of Coastal and Deep Sea
Publisher : Pattimura University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30598/jcds.v2i2.15309

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.
Prototype Testing of Automatic Vessel Tracking System using Web-Based Visualization Nazzla, Rauzatul; Hestirianoto, Totok; Pujiyati, Sri
PELAGICUS Volume 3 Nomor 2 Tahun 2022
Publisher : Politeknik Kelautan dan Perikanan Karawang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15578/plgc.v3i2.10609

Abstract

Automatic Tracking System is an example in the development of navigation technology that is needed in every means of transportation by land, water, or air. An example of its application in the field of fisheries management is the Vessel Monitoring System (VMS). The purpose of this study was to develop a telemetry technique particularly automatic vessel tracking system. In this study is expected to produce a prototype which can provide information about the movement of traditional fishing boats, especially in coastal areas. Prototype testing in this study was limited to the performance of a prototype based on the capability of the electronics and the resulting output data. Output data obtained by two methods: (1) the trial was stationary, and (2) mobile test. This study also examined the comparison between tracker prototype with GPS handheld. Mobile tracker marks the position automatically whenever the tool is turned on. The increasing distance between the transmitter unit to the receiver unit, the deviation would be even greater. This tool was sensitive in responding and quickly perform the recording every movement. When compared to handheld GPS, this tool has good accuracy and precision indicated by a 95% confidence interval.