• 제목/요약/키워드: Ship power system

검색결과 494건 처리시간 0.031초

Smart Power Management System for Leisure-ship

  • Park, Do-Young;Oh, Jin-Seok
    • 한국항해항만학회지
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    • 제35권9호
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    • pp.749-753
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    • 2011
  • A leisure ship has a stand-alone type power system, and a generator is in use on this condition. But the generator cannot be operated in condition of leisure activity, ocean measurement and etc, because of environment and noise. Recently, renewable energy system is connected with power system of the leisure-ship for saving energy. The renewable energy system can not supply the stable power to leisure-ship because power generation changes according to weather condition. And most of the leisure ship is operated without methodical power management system. This study's purpose is to develop SPMS(Smart Power Management System) algorithm using the renewable energy (photovoltaic, wind power and etc.). The proposed algorithm is able to supply stable the power according to operation mode. Furthermore, the SPMS manages electric load (sailing and communication equipment, TV, fan, etc.) and reduces operating times of the generator. In this paper, the proposed algorithm is realized and executed by using LabVIEW. As a result, the hour for operating the generator is minimized.

Variable Priority Number Control of SPMS for Leisure Ship

  • Oh, Jin-Seok;Park, Do-Young
    • Journal of Advanced Marine Engineering and Technology
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    • 제36권1호
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    • pp.141-148
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    • 2012
  • The power system of leisure ship has a character of stand-alone type, so it continuously checks the usable power. Especially, the leisure ship using renewable energy needs to adjust the power consumption of loads according to the usable power. Also, the important loads of leisure ship are different by operation mode. However, current power management system doesnot consider such character. This paper studied load management system of the SPMS(Smart Power Management System) and composed using the smart plug. The SPMS controls the loads depending on a user's pattern and character through variable priority number control. This control algorithm was verified through simulation of assumed user and situation using LabVIEW.

유압 윈치를 이용한 선박 자동 계선법 (Proposition of Automatic Ship Mooring Using Hydraulic Winch)

  • 허정규;양경욱
    • 드라이브 ㆍ 컨트롤
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    • 제10권4호
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    • pp.14-21
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    • 2013
  • The numerical analysis of the automatic ship mooring system which was equipped in the ship for trying to berth at the pier was performed in this study. The automatic ship mooring using hydraulic winch was a new method that had not need to change the existing devices and to help a pilot ship of outside. The numerical results of the proposed mooring system including ship motion were that the speed and rolling phenomenon of ship was affected by changing in the ship weight and affected the slope maintenance and yaw degree of ship if there has a trim of stern. Also, a static force of ship at the initial movement was important to calculate the mooring power. The moving force and inertial force of ship on the vertical direction was confirmed for the mooring stability. Therefore, the power and velocity of hydraulic mooring winch should be determined by considering the significant characteristics such as weight, velocity, inertial force and moving force of ship.

배터리 연계형 선박 전력관리시스템의 중부하 제어 (The heavy load control of ship's battery connected power management system)

  • 강영민;장재희;오진석
    • 한국정보통신학회논문지
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    • 제21권7호
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    • pp.1455-1463
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    • 2017
  • 세계경기가 저성장, 저소비, 높은 실업률, 고위험, 짧은 호황 긴 불황 등을 기록하고 있다. 이에 따라 해운경기가 하락하여 선박 유지비용의 절감이 불가피해지고 있다. 이를 위해 그린 선박, 에코 선박, 스마트 선박과 같은 선박의 에너지를 절감하기 위한 연구가 활발히 진행 중에 있다. 친환경 선박에서 배터리를 사용하는 전력관리시스템은 중요한 연구분야 중 하나이다. 본 논문에서는 발전기만을 사용하는 일반적인 선박의 전력관리시스템의 중부하 제어를 분석하고 배터리 연계형 전력관리시스템에서 중부하를 제어하는 알고리즘을 연구하였다. 이를 위해 배터리 연계형 전력관리시스템의 구성을 제안하고 제안된 시스템을 기반으로 배터리 연계형 전력 시뮬레이터를 구성하였다. 구성된 시뮬레이터를 통해 배터리 연계형 전력관리시스템에서 중부하 제어에 따른 배터리의 동작을 정의하고 이를 확인하였다.

Design of a hybrid power management system and cold start simulation in a fuel cell ship with PLECS

  • Oh, Jin-Seok;Kang, Young-Min
    • Journal of Advanced Marine Engineering and Technology
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    • 제40권5호
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    • pp.429-436
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    • 2016
  • Currently, many studies on green ships are under way. Fuel cell (FC) ships are of interest as future low-emission, fuel-efficient vessels. In this paper, a hybrid power management system for an FC ship was designed. The system consists of an FC, a battery, a unidirectional DC/DC converter, a bidirectional DC/DC converter, a filter, an inverter, and a propulsion component. To design the system, we analyze electric sources and converters, and create PLECS models of hybrid power management system. Then, we check the cold start sequence and perform a simulation to understand the characteristics of the hybrid power management system in an FC ship.

선박 비상조명 시스템의 원격제어 (Remote control of ship's emergency lighting system)

  • 임현정;양현숙;김건우;이성근;김윤식
    • 한국마린엔지니어링학회:학술대회논문집
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    • 한국마린엔지니어링학회 2005년도 후기학술대회논문집
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    • pp.252-253
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    • 2005
  • This paper describes a improvement of power control characteristics of ship's emergency lighting power supply(SELPS), that power factor(PF) is improved and electric power is controlled extensively, and power ON-OFF is controlled and system parameter monitored in remote distance by PC serial communication.

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디젤 및 가스터빈 엔진을 사용하는 전투함의 복합추진체계 기술 동향 분석 (Combined Propulsion System Analysis for Naval Combatant Vessels using Diesel and Gas Turbine Engine)

  • 이형민
    • 동력기계공학회지
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    • 제15권5호
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    • pp.16-21
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    • 2011
  • The large scale decisive battle will be gradually reduced on the sea in the future and surface combatant ship installed advanced weapon units as well as propulsion system will be continuously increased. The high level of military technology leads to appear state-of-the-art weapon system using high power energy. As a results, fossil fuel powered main prime mover as diesel engine and gas turbine which are composed of mechanical propulsion system should be decreased from combatant ship in the near future. The new building naval combatant ship with the latest technology has electric based propulsion method of the hybrid type combined with mechanical and electrical drive. U.S. and Royal Navy, especially, select the integrated fully electric based propulsion system for the next generation combat ship and play an important roll for developing them. In this context, this paper was focused on the deduction of implications through analyzing the combatant ship propulsion system using diesel and gas turbine engine which are promoted on the worldwide.

선박 비상조명용 디지털 전원장치 개발 (A Study on the Development of Digital Power Supply for Ship′s Emergency Lighting System)

  • 이성근
    • 한국항해항만학회지
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    • 제28권8호
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    • pp.667-671
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    • 2004
  • 본 논문은 선박비상조명용 디지털 전원장치의 개발에 관해 연구하였으며, 비상조명용 전원장치는 비상급전시스템, 반 브리지 인버터, 형광램프 기동회로 및 마이크로프로세서 제어시스템 등으로 구성되어 있다. 실험을 통하여 기존의 아날로그형 비상급전시스템에 비해 신속하고 안정된 전력이 공급되고 있음을 확인하고, 인버터의 펄스주파수 가변에 의한 조명제어가 잘 이루어지고 있음을 확인한다.

Study of Harmonic Suppression of Ship Electric Propulsion Systems

  • Wang, Yifei;Yuan, Youxin;Chen, Jing
    • Journal of Power Electronics
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    • 제19권5호
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    • pp.1303-1314
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    • 2019
  • This paper studies the harmonic characteristics of ship electric propulsion systems and their treatment methods. It also adopts effective measures to suppress and prevent ship power systems from affecting ship operation due to the serious damage caused by harmonics. Firstly, the harmonic characteristics of a ship electric propulsion system are reviewed and discussed. Secondly, aiming at problems such as resonant frequency and filter characteristics variations, resonance point migration, and unstable filtering performances in conventional passive filters, a method for fully tuning of a passive dynamic tunable filter (PDTF) is proposed to realize harmonic suppression. Thirdly, to address the problems of the uncontrollable inductance L of traditional air gap iron core reactors and the harmonics of power electronic impedance converters (PEICs), this paper proposes an electromagnetic coupling reactor with impedance transformation and harmonic suppression characteristics (ECRITHS), with the internal filter (IF) designed to suppress the harmonics generated by PEICs. The ECRITHS is characterized by both harmonic suppression and impedance change. Fourthly, the ECRITHS is investigated. This investigation includes the harmonic suppression characteristics and impedance transformation characteristics of the ECRITHS at the fundamental frequency, which shows the good performance of the ECRITHS. Simulation and experimental evaluations of the PDTF are carried out. Multiple PDTFs can be configured to realize multi-order simultaneous dynamic filtering, and can effectively eliminate the current harmonics of ship electric propulsion systems. This is done to reduce the total harmonic distortion (THD) of the supply currents to well below the 5% limit imposed by the IEEE-519 standard. The PDTF also can eliminate harmonic currents in different geographic places by using a low voltage distribution system. Finally, a detailed discussion is presented, with challenges and future implications discussed. The research results are intended to effectively eliminate the harmonics of ship electric power propulsion systems and to improve the power quality of ship power systems. This is of theoretical and practical significance for improving the power quality and power savings of ship power systems.

어선용 하이브리드 추진시스템에 관한 연구 (A Study on the Hybrid Propulsion System for Fishing Boat)

  • 오진석;조관준;박충환;함연재;곽준호;이지영
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권5호
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    • pp.677-683
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    • 2008
  • The electric propulsion system us closely related with the economical efficiency of ship operation. Fuel efficiency is mainly decided by propulsion system such as diesel engine, propulsion motor and steam turbine. The hybrid propulsion system for fishing boat consists of diesel engine and battery as propulsion power source. This paper is to design battery capacity according to power consumption with ship operation condition, and to test the power consumption of model ship in the circulating water channel. As a result. it can be known that the optimum ship operation condition affects the fuel efficiency.