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Techno-Economic Analysis of Marine Ecosystem to Achieve Zero Carbon Emission
J.Z. Tee
Economic Analysis, Stability, System Performance, Power, Photovoltaic (PV)
PV Applications, Integration and Storage
Subtopic: Energy System Integration
Event: 38th European Photovoltaic Solar Energy Conference and Exhibition
Session: 6BV.5.35
1499 - 1501
ISBN: 3-936338-78-7
Paper DOI: 10.4229/EUPVSEC20212021-6BV.5.35
0,00 EUR
Document(s): paper, poster


In marine industry, Flettner Rotor (FR) is being exploited as the integrated power source with conventional system on-board marine vessel as complementary resource to be introduced for fuel saving as well as reduction in carbon footprint. As such, an integrated system of Diesel Engine (DE) and FR with combined Photovoltaic (PV) and battery energy storage system (BESS) is developed to propose to meet the load demand on voyage, highly dependent on weather condition sailing in geographically. In this paper, power stability is verified with simulation (ETAP) has shown cargo ship with proposed system configuration can adapt this methodology to meet required load demand with smoothing control in load fluctuation. The return on investment will be presented to compare between proposed system and convention system for Capital Expenditure (Capex) and Operational Expenditure (Opex). As such, cost analysis on proposed system can increase the value in investment to be further developed into business model.