• Title/Summary/Keyword: Auxiliary vehicle

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철도차량 보조전원장치 특성 분석에 관한 연구 (A Study on Characteristic Analysis of Auxiliary Power Supply for Railway Vehicle)

  • 한영재;한성호;이태형;이수길;이영호
    • 전기학회논문지P
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    • 제66권4호
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    • pp.177-181
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    • 2017
  • Auxiliary power supply for railway vehicle is a equipment that focuses on the service of passengers in a vehicle. It supplies power to controllers used in heating and cooling devices, fluorescent lamps, batteries and many other electrical equipments. Most of the auxiliary power supply for railway vehicle are mainly used for the round trips and circulation routes within the metropolitan area and have a capacity of 170~200 kVA. In this study, we developed the auxiliary power supply capacity to 240kVA for 200km/h class. As such, the auxiliary power supply is an important device for securing the reliability and safety of the railway vehicle and improving the passenger convenience, so the performance verification of the performance must be ensured. In this paper, 240kVA auxiliary power supply is developed. Also, performance of the auxiliary power supply manufactured through the analysis of various characteristics related to the auxiliary power supply was confirmed while operating the actual line.

DC 3000V용 보조전원장치 개발 (The Development of APU(Auxiliary Power Supply Unit) for DC 3000V)

  • 김진용;김연충;한정수
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 춘계학술대회 논문집
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    • pp.1654-1660
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    • 2011
  • The korea Electric Railway feeder voltage is DC 1500V and AC 250000V. The auxiliary power supply of the vehicle auxiliary power units for domestic electrical feed has been developed with domestic technology hyeonchae mounted station, and domestic uses, such as voltage, have been exported to other countries. However, do not use at domestic that can be used for DC 3000V voltage auxiliary power unit does not develop, vehicle exports global. This has already been replaced by imported products from other nations is a real situation. Thus, our auxiliary power unit for the DC 3000V was developed, it will be exported to Ukraine. In this paper, We introduced circuit and structure of developed auxiliary power supply unit, and verified the performance with output characteristic of the auxiliary power unit.

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휴리스틱 외판원 문제 알고리즘을 이용한 노천광산 보조 작업 차량의 최적 이동경로 분석 (Optimal Routes Analysis of Vehicles for Auxiliary Operations in Open-pit Mines using a Heuristic Algorithm for the Traveling Salesman Problem)

  • 박보영;최요순;박한수
    • 터널과지하공간
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    • 제24권1호
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    • pp.11-20
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    • 2014
  • 본 연구에서는 노천광산에서 다수의 작업 지점들을 경유하며 광산 전역을 순회해야하는 보조 작업 차량의 최적 이동경로를 분석하였다. Dijkstra's 알고리즘을 사용했던 기존의 연구들과 달리 휴리스틱 외판원 문제 알고리즘을 이용한 결과 다수의 작업지점들의 방문 순서까지 고려하여 보조 작업 차량의 최적 이동경로를 분석할 수 있다. 인도네시아 파시르 석탄 노천광산의 로또 채광장을 대상으로 광산 전역을 정차 없이 순회하는 보조작업 차량의 최적 이동경로를 분석하였다. 그 결과 분석자의 직관에 따라 작업지점들의 방문 순서를 결정하는 것보다 휴리스틱 TSP 알고리즘을 적용해 분석하는 것이 25개 지점 경유시 20분 정도의 이동시간을 단축할 수 있는 것으로 분석되었다. 본 연구에서 제시한 결과가 노천광산 보조 작업 차량들의 시스템 최적화와 관련된 향후 연구들의 방향설정 위해 기초자료로 활용될 수 있을 것이라 기대한다.

입력 급변 대응을 위한 철도 차량용 보조전원장치 외란 억제 알고리즘 구현 (Auxiliary Power Unit Control Algorithm for Input Voltage Disturbance Suppression)

  • 김지찬;백승길;차한주
    • 전기학회논문지
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    • 제64권12호
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    • pp.1810-1817
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    • 2015
  • The railway vehicle has an auxiliary power unit for supplying power to the associated electronic control devices and passenger service unit. Typically, input voltage from the catenary for rolling stock is highly fluctuating according to the substation capacity, vehicle propulsion and regeneration. Especially, the frost and freezing on contact wire in winter can cause a blackout inside vehicle, and also brings about electronic components damaging and the system down. To prevent this problem, a large filter and capacitor is used. But this is not a perfect solution, because it is increasing weight of the unit. In this paper, a new algorithm is proposed to suppress the disturbance without adding devices. Simulation and experimental results show that the proposed algorithm has performance to suppress the disturbance at the sudden input voltage variations.

IGBT를 이용한 전동차용 보조전원장치의 소음 저감에 관한 연구 (A Study on Noise Reduction for Auxiliary Power Supply of railway Vehicle Using IGBT)

  • 노애숙;김주범;배기훈;최종묵
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 1998년도 창립기념 춘계학술대회 논문집
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    • pp.280-286
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    • 1998
  • In recent years, the interest in noise increases gradually and the low noise level becomes one of the important performances in electrical equipment for railway vehicle. In the auxiliary power supply, most of the noise is made by the current ripple of alternating current reactor(ACL) which filters the output voltage. And this current ripple results from the voltage harmonics across the ACL. So the noise can be reduced by eliminating the voltage harmonics across the ACL. This paper shows harmonic eliminating technique which is making gating signals of upper and lower inverter have a phase difference in the 12-step inverter type auxiliary power supply. This technique was proved by testing on the developed 180KVA auxiliary power supply using IGBT.

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유럽 CO2 감축법에 따른 차량 CO2 감축 기술 전략에 관한 연구 - 보기류 개선을 중심으로 - (Study on the Strategy of CO2 Reduction Technology in Vehicle according to CO2 Emissions Regulation in EU - Focusing on Auxiliary Energy Improvement -)

  • 석규업;윤형진
    • 한국자동차공학회논문집
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    • 제23권2호
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    • pp.230-238
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    • 2015
  • The main purpose of this paper is to suggest opportunities for reducing $CO_2$ emission in energy conversion of a vehicle, focused on auxiliary energy improvement in the automotive field. As part of worldwide efforts to curb global warming and to protect the domestic industry as trade barriers, many countries have set goals to regulate greenhouse gas emissions. As an example, new $CO_2$ emission regulation in EU was expected to go into effect strictly in 2020. Therefore, global car-makers need to establish strategic responsiveness of the regulations. This paper shows $CO_2$ economic value by using the correct interpretation of the relevant laws and regulations. The $CO_2$ value analyzed using quantitative figures leads to the possibility of auxiliary(accessories, HVAC, electric apparatus etc.) technology for improving fuel economy. As a result, this study generalizes the meaning of electric power saving for each driving mode by auxiliary energy improvement.

보조동력장치 엔진 Base의 피로수명 예측 및 충격파손에 관한 연구 (A Study on Prediction of Fatigue Life and Shock Fracture for the Engine Base of Auxiliary Power Unit for Tracked Vehicle)

  • 이상범;정경택;신재호;장환영;서정세
    • 한국정밀공학회지
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    • 제25권4호
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    • pp.86-92
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    • 2008
  • This paper is to investigate the behavior of linear static structure stress, the fatigue and experimental shock fracture far engine base in the Auxiliary Power Unit to resolve its restricted electrical power problem. The shock fracture test was experimentally made under MIL standard criteria. The numerical results by finite element method had a good agreement with those from the shock test. The design data of predicting the fracture at the initial crack and the damage behavior of structure with shock and vibration load in the battle field can be obtained from shock test. In the functional shock test, the crack at the side parts of the engine base was found at peak acceleration of 40g.

Design and Control Method of ZVT Interleaved Bidirectional LDC for Mild-Hybrid Electric Vehicle

  • Lee, Soon-Ryung;Lee, Jong-Young;Jung, Won-Sang;Won, Il-Kwon;Bae, Joung-Hwan;Won, Chung-Yuen
    • Journal of Electrical Engineering and Technology
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    • 제13권1호
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    • pp.226-239
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    • 2018
  • In this paper, design and control method ZVT Interleaved Bidirectional LDC(IB-LDC) for mild-hybrid electric vehicle is proposed. The IB-LDC is composed of interleaved buck and boost converters employing an auxiliary inductor and auxiliary capacitors to achieve zero-voltage-transition. Operating principle of IB-LDC according to operation mode is introduced and mathematically analyzed in buck and boost mode. Moreover, PFM and phase control are proposed to reduce circulating current for low power range. Passive components design such as main inductor, auxiliary inductor and capacitors is suggested, considering ZVT condition and maximizing efficiency. Furthermore, a 600W prototype of ZVT IB-LDC for MHEVs is built and tested to verify validity.

8200호대 전기기관차 보조전원장치 개발품의 신뢰도 기반 수명주기비용 분석 (Life Cycle Cost Analysis of Auxiliary Power Unit Developments for 8200 Series Electric Locomotive Based on Reliability)

  • 이계승;김완일;창윤우;김재문
    • 전기학회논문지
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    • 제67권11호
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    • pp.1523-1529
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    • 2018
  • Electric vehicles that are currently in operation are being produced domestically. Therefore, there is no great difficulty in receiving or repairing the failed parts or in the overall repair. On the other hand, most of the electric locomotives are manufactured by introducing the parts and technology of foreign vehicle manufacturers. In this paper, conducted a study about life cycle cost analysis of developed auxiliary power unit in 8200 series electric locomotive and suggested cost down method. This confirms the economic benefits of the developed products of the auxiliary power supply compared to the existing products. In addition, a sensitivity analysis of MTBF was conducted to suggest a life cycle cost down method.

Modeling and an Efficient Com bined Control Strategy for Fuel Cell Electric Vehicles

  • Lee, Nam-Su;Shim, Seong-Yong;Ahn, Hyun-Sik;Choi, Joo-Yeop;Choy, Ick;Kim, Do-Hyun
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2004년도 ICCAS
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    • pp.1629-1633
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    • 2004
  • In this paper, we first implement the simulation environment to investigate the efficient control method of a Fuel Cell Electric Vehicle (FCEV) system with battery. The subsystems of a FCEV including the fuel cell system, the electric motor (including the power electronics) and the tansmission (reduction gear), and the auxiliary power source (battery) are mathematically fomulated and coded using the Matlab/Simulink software. Some examples are given to show the capabilities of the modeled system and d a basic control strategy is examined for the economic energy distribution between the fuel cell and the auxiliary power source. It is illustrated by simulations that the actual vehicle velocity follows the given desired velocity pattern while both SOC control and power distribution control are being performed.

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