Fuel-Efficient Low-Voltage DC Architecture for Diesel-Electric Diving Support Vessels

被引:0
|
作者
Chai, Merlin [1 ]
Sobrayen, Lingeshwaren [1 ]
Reddy, B. Dastagiri [1 ]
Yelaverthi, Dorai Babu [1 ]
Panda, Sanjib K. [1 ]
Wu Die [2 ]
Chen Xiaoqing [2 ]
机构
[1] Natl Univ Singapore, Dept Elect & Comp Engn, Singapore, Singapore
[2] Singapore Technol Marine Ltd, Singapore, Singapore
关键词
diesel-electric; diving support vessel; fuel consumption; genetic algorithm; low-voltage DC system; POWER-SYSTEMS; PROPULSION;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper proposes a low-voltage DC (LVDC) architecture to replace the conventional low-voltage AC (LVAC) architecture in a diving support vessel (DSV). A genetic algorithm based optimization algorithm is also adopted to minimize the fuel consumption of the DSV. The DSV in study spends a majority of its time in dive or dynamic positioning (DP) mode, in which all four diesel generators are online to ensure redundancy and fast response to unpredictable sea conditions. Conventionally, the allocation of power generation for the diesel generators is performed via equal loading, which may not result in minimal fuel consumption. A comparison of fuel consumption in normal operation modes for the conventional LVAC and proposed LVDC architectures are performed, both with equal loading and optimization with GA. Additional constraints are then applied for fuel consumption comparisons in dive and DP operating modes.
引用
收藏
页码:4413 / 4418
页数:6
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  • [1] A Multivariable Modeling Approach for the Design of Power Electronics Based DC Distribution Systems in Diesel-Electric Vessels
    Alacano, Argine
    Jose Valera, Juan
    Abad, Gonzalo
    [J]. 2016 IEEE 17TH WORKSHOP ON CONTROL AND MODELING FOR POWER ELECTRONICS (COMPEL), 2016,
  • [2] Active Damping Control Strategy to Avoid Resonance Issues in Diesel-Electric Vessels with DC Distribution Systems
    Alacano, Argine
    Abad, Gonzalo
    Jose Valera, Juan
    [J]. 2016 IEEE 17TH WORKSHOP ON CONTROL AND MODELING FOR POWER ELECTRONICS (COMPEL), 2016,
  • [3] A new approach for balanced power distribution in energy sources with minimal fuel consumption on diesel-electric vessels
    Yigit, Kenan
    [J]. ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS, 2022, 44 (02) : 5215 - 5226
  • [4] Efficient protection scheme for low-voltage DC micro-grid
    Som, Shreyasi
    Samantaray, Subhransu Ranjan
    [J]. IET GENERATION TRANSMISSION & DISTRIBUTION, 2018, 12 (13) : 3322 - 3329
  • [5] Energy Efficient Low-Voltage DC-Grids for Commercial Buildings
    Weiss, R.
    Ott, L.
    Boeke, U.
    [J]. 2015 IEEE First International Conference on DC Microgrids (ICDCM), 2015, : 154 - 158
  • [6] High Gain Efficient DC-DC Converter for Low-Voltage Power Generation Application
    Satish, Swami B.
    Jain, Sachin
    [J]. 2016 IEEE STUDENTS' CONFERENCE ON ELECTRICAL, ELECTRONICS AND COMPUTER SCIENCE (SCEECS), 2016,
  • [7] Multifunctional Onboard Charger for Electric Vehicles Integrating a Low-Voltage DC–DC Converter and Solar Roof
    Lee, Jeong
    Won, Jehyuk
    [J]. IEEE JOURNAL OF EMERGING AND SELECTED TOPICS IN POWER ELECTRONICS, 2024, 12 (01) : 283 - 294
  • [8] Self-Starting DC:DC Boost Converter for Low-Power and Low-Voltage Microbial Electric Generators
    Degrenne, Nicolas
    Buret, Francois
    Morel, Florent
    Adami, Salah-Eddine
    Labrousse, Denis
    Allard, Bruno
    Zaoui, Abderrahime
    [J]. 2011 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2011, : 889 - 896
  • [9] An innovative digital control architecture for low-voltage, high-current DC-DC converters with tight voltage regulation
    Saggini, S
    Ghioni, M
    Geraci, A
    [J]. IEEE TRANSACTIONS ON POWER ELECTRONICS, 2004, 19 (01) : 210 - 218
  • [10] Boron Carbide Synthesis in Low-Voltage DC Electric Arc Initiated in Open Air
    A. Ya. Pak
    G. Ya. Mamontov
    [J]. Technical Physics Letters, 2018, 44 : 615 - 617