Power flow analysis of DC distribution system in a ship with non-electric propulsion

Author:

Kurniawan Akhmad ReinaldyORCID,Kurniawan AdiORCID,Sarwito SardonoORCID,Gumilang Ahlur Roi NovantoORCID,Budianto FirmanORCID

Abstract

<span lang="EN-US">Direct current (DC) shipboard power distribution system offers higher power efficiency and voltage stability compared to the alternating current (AC) systems due to lower impedance. The implementation of DC distribution system in all-electric ship seems to be worthy since the reduction of power loss and voltage drop could overcome the drawback of DC system. However, the effectiveness of DC distribution system in ship with non-electric propulsion has not been investigated yet. Unlike in an all-electric ship, electric power flow in the distribution system of a ship with mechanic propulsion is considerably lower. The study aims to provide numerical analysis of power loss and voltage drop reduction on DC distribution system that applied to a ship with mechanic propulsion. The power flow analysis is performed on a tanker ship. Contrary to the hypothesis, the results show that the DC power distribution increase the power losses about 15% compared to AC system due to the addition of rectifier and inverter. However, the voltage drops are decreased in DC distribution system. Further investigation in the other aspects should be performed before concludes whether DC distribution system is worthy to be used in the aforementioned ship.</span>

Publisher

Institute of Advanced Engineering and Science

Subject

Electrical and Electronic Engineering,General Computer Science

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Harmonic Analysis due to Reconfiguration of Shipboard AC to DC Electrical Distribution System with Hybrid Energy Sources;2023 IEEE 7th International Conference on Information Technology, Information Systems and Electrical Engineering (ICITISEE);2023-11-29

2. Power Loss Simulation due to Reconfiguration of Shipboard AC to DC Electrical Distribution System with Hybrid Energy Sources;2023 IEEE 7th International Conference on Information Technology, Information Systems and Electrical Engineering (ICITISEE);2023-11-29

3. Transient Stability Analysis Due to Reconfiguration of Electrical Power System on Ship With Hybrid Power Sources;2023 International Conference on Advanced Mechatronics, Intelligent Manufacture and Industrial Automation (ICAMIMIA);2023-11-14

4. Numerical Analysis of Voltage Drop on Low Voltage Direct Current Power System on Ship with Hybrid Power Sources;2023 International Conference on Advanced Mechatronics, Intelligent Manufacture and Industrial Automation (ICAMIMIA);2023-11-14

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