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Journal : majority science journal

Evaluation of ROV-Based Coral Reef Monitoring System: A Comparative Analysis with Underwater Photo Transect in Nabire Waters, Cenderawasih Bay National Park, Indonesia Nicodemus Rahanra; Abdul Hamid Toha; Paulus Boli; Selvi Tebay
MSJ : Majority Science Journal Vol. 4 No. 3 (2026): MSJ - August
Publisher : PT. Hafasy Dwi Nawasena

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61942/msj.v4i3.652

Abstract

Background: Coral reef monitoring in tropical archipelago regions faces persistent challenges including limited diver availability, high operational costs, and safety risks. Remotely Operated Vehicles (ROV) have emerged as a promising technological alternative, yet systematic evaluation of their accuracy and efficiency relative to established quantitative methods remains limited, particularly in Indonesian waters. Methods: A parallel comparative survey was conducted on 6 January 2025 at Nusi Island, Cenderawasih Bay National Park, Nabire, Papua Province, Indonesia. Two stations (Nusi 1 and Nusi 2) were monitored simultaneously using Underwater Photo Transect (UPT) analysed with Coral Point Count with Excel extensions (CPCe) software and a Gladius Mini ROV (MORAL-BOT system). Each UPT station generated ~1,500 random-point classifications from 50 photographic frames along a 50-m transect. Relative deviation analysis and descriptive statistics (Shapiro-Wilk, Mann-Whitney U, Cohen’s d effect size) were applied to compare methodological performance. Cost and time efficiency were assessed using activity-based costing and time-motion study. Results: UPT-CPCe detected live hard-coral cover (HC) of 29.89% at Nusi 1 (Moderate category) and 3.13% at Nusi 2 (Poor category), with a statistically significant difference (Mann-Whitney U, p < 0.05; Cohen’s d = 1.008, large effect size). ROV estimated HC < 5% at both stations. Mean relative deviation between methods was 87.8% at Nusi 1 (patchy habitat) and 13.1% at Nusi 2 (homogeneous degraded habitat). ROV surveys were completed 3.8× faster (55 min vs. 210 min) and at 83% lower operational cost (Rp 2,100,000 vs. Rp 12,500,000) compared with UPT. Conclusions: UPT-CPCe outperforms ROV in quantitative precision and taxonomic resolution, especially in heterogeneous reef habitats. Conversely, ROV provides significant advantages in operational efficiency, safety, and the ability to access greater depths. A hybrid monitoring protocol—ROV for rapid spatial coverage and UPT for quantitative baseline validation—is recommended as the optimal approach for large-scale, cost-effective reef monitoring in Indonesia’s eastern archipelago.
A Comparative Analysis of Coral Reef Degradation in Nabire Bay, Indonesia, Using ROV-Based Quantitative Assessment: A Tale of Two Sites Nicodemus Rahanra; Abdul Hamid Toha; Paulus Boli; Selvi Tebay
MSJ : Majority Science Journal Vol. 4 No. 3 (2026): MSJ - August
Publisher : PT. Hafasy Dwi Nawasena

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61942/msj.v4i3.656

Abstract

Coastal marine ecosystems in the Coral Triangle are facing unprecedented threats, yet high-resolution data to guide management remains scarce. This study presents a comparative analysis of coral reef health at two contrasting sites in Nabire Bay, Indonesia, using quantitative data from a Remotely Operated Vehicle (ROV). Site 1 (Nabire) and Site 2 (Pulau Nusi) were surveyed to assess benthic composition. The results reveal a stark picture of degradation at both locations, but driven by different ecological dynamics. Site 2 (Pulau Nusi) is in a critical state, with live coral cover at a mere 3.13% and dominated by sand (61.73%) and rubble (21.20%), indicating chronic sedimentation stress. Site 1 (Nabire) shows slightly better but still poor conditions, with live coral cover at 6.64%, but with a higher proportion of dead coral (17.27%). The comparative analysis highlights that while both sites are severely degraded, the dominant degradation driver at Pulau Nusi is likely terrestrial runoff and sedimentation, whereas Site 1 may be experiencing a combination of stressors including a recent mass mortality event. This study underscores the utility of ROV technology for rapid, cost-effective, and quantitative assessment, providing crucial, site-specific data needed to develop targeted conservation and management strategies in a high-priority marine biodiversity region.