• Title/Summary/Keyword: Maglev railway

Search Result 166, Processing Time 0.034 seconds

A Study on the Design of Simulator System for Maglev Running Performance (자기부상열차 주행성능 시뮬레이터 시스템 설계에 관한 연구)

  • Lee, Jai-Kyung;Park, Seong-Whan
    • Proceedings of the KSR Conference
    • /
    • 2006.11a
    • /
    • pp.161-169
    • /
    • 2006
  • To develop a Maglev successfully, it is necessary to develop the core technologies such as levitation and propulsion system and construct engineering system which can integrally evaluate performances of Maglev and provide technical reviews parametrically In this paper, we designed the Maglev running performance simulator which can provide decision-making Information for direction of development of Maglev and examination for running performance about the change of various design parameters such as safety and stability, noise, and ride quality. The designed system is an engineering-based system and can be developed using engineering framework by KIMM which can integrate diverse CAE systems in distributed environments and provide systematic information management. And it also provides VR-based visualization and web-based user interface except VR system which requires special hardware system.

  • PDF

Improvement and Behavior Analysis of Track Structure for Urban Maglev System (도시형 자기부상철도 궤도구조 개선 및 거동분석)

  • Choi, Eun-Soo;Lee, Hee-Up;Kim, Lee-Hyeon;Chung, Won-Seok
    • Proceedings of the KSR Conference
    • /
    • 2006.11a
    • /
    • pp.239-252
    • /
    • 2006
  • The existing track structure for urban Maglev system is designed for the Maglev vehicles of HSST in Japan and UTM in Korea. The tracks hvaing cross beams for supporting rails are located on bridge girders and have several draw backs. Linimo in Nagoya, Japan, the first commercial urban Maglev line, has separated tracks from a bridge to overcome the previous track structure. However, the Linimo just put the existing track on bridge deck. This study suggests a improved track structure for urban Maglev system and compares the behavior of the new and existing track through static structural analyses. In the improved track, the power collector of a Maglew vehicle is installed parallel to the bridge deck surface, and, thus, the bottom width of the track structure is not limited by the vehicle's width. Therefore, the live load is distributed more effectively by the wide bottom of the track. Also, steel plates instead of steel cross beams are used to support rails, and, thus, the rail's deflection is improved.

  • PDF

Study on Effects of Natural Frequency of a Guideway on Running Behaviour of a Maglev Vehicle (궤도 고유진동수에 따른 자기부상열차 주행특성 연구)

  • Yim, Bong-Hyuk;Han, Hyung-Suk;Jung, Jung-Hoon;Kim, Young-Joong;Kim, Byung-Hyun
    • Proceedings of the KSR Conference
    • /
    • 2007.05a
    • /
    • pp.1138-1143
    • /
    • 2007
  • Since Maglev vehicle is run over an elevated guideway, the vibrational characteristics of guideway affect the running behavior of the vehicle and guideway. The design of a guideway has a strong effect on the costs of constructing guideways, therefore optimized design of the guideway satisfying running performance is needed for the commercialization of the Maglev vehicle. With an analysis program for dynamics of Maglev vehicles, the dynamic responses of the Maglev vehicle with electromagnet suspension are numerically analyzed according to changes in fundamental natural frequency ratio of a guideway.

  • PDF

Study on Effects of Damping of a Guideway on Running Behaviour of a Maglev Vehicle (궤도 감쇠에 따른 자기부상열차 주행특성 연구)

  • Kim, Suk-Hee;Han, Hyung-Suk;Jung, Jung-Hoon;Kwon, Jung-Il;Kim, Byung-Hyun
    • Proceedings of the KSR Conference
    • /
    • 2007.05a
    • /
    • pp.1091-1096
    • /
    • 2007
  • Since Maglev vehicle is run over an elevated guideway, the structural properties of guideways affect the running behavior of the vehicle and guideway. The design of a guideway has a strong effect on the costs of constructing guideways, therefore optimized design of the guideway satisfying running performance is needed for the commercialization of the Maglev vehicle. With an analysis program for dynamics of Maglev vehicles, the dynamic responses of the Maglev vehicle with electromagnet suspension are numerically analyzed according to changes in fundamental modal damping ratio of a guideway.

  • PDF

Air Gap Responses of the Maglev Vehicle UTM-01 to Irregularities of Guideway (자기부상열차 UTM-01의 부상 공극 해석)

  • Han, Hyung-Suk;Kim, Sook-Hee;Yim, Bong-Hyuk;Kwon, Jung-Il;Hur, Young-Chul
    • Proceedings of the KSR Conference
    • /
    • 2007.11a
    • /
    • pp.291-295
    • /
    • 2007
  • The irregularities in the guideways used in the Maglev transportation system that result from surface roughness and deflection of guideway have strong effects on the dynamic characteristics of Maglev vehicles, because the electromagnetic suspension of Maglev vehicles strongly interacts with the guideway. For this reason, a numerical prediction of air gap responses to these irregularities is desirable to improve aspects of running performance, such as stability and passenger comfort, while minimizing aesthetic impact and construction cost. This paper presents a procedure to predict the air gap response which is a criteria for stability, and investigates the responses with the goal of attaining higher travel speeds in the urban Maglev vehicle UTM-01 utilizing electromagnetic suspension.

  • PDF

Simulation of the Dynamic Interaction Between Maglev and Guideway using a Flexible Beam Model (유연보 모델에 의한 자기부상열차/궤도 동적 상호작용 시뮬레이션)

  • Han Hyung-Suk;Lee Jong-Min;Kim Dong-Sung;Kim Bong-Sup
    • Proceedings of the KSR Conference
    • /
    • 2004.10a
    • /
    • pp.357-362
    • /
    • 2004
  • Maglev vehicles, which are levitated and propelled by electromagnets, often run on elevated guideways comprised of steel, aluminum and concrete. Therefore, an analysis .of the dynamic interaction between the Maglev vehicle and the guideway is needed in the design of the critical speed, ride, controller design and weight reduction of the guideway. This study proposes a dynamic interaction simulation technique using a flexible beam model based on multi-body dynamics. The vehicle and the elevated guideway are represented as a multi-body dynamics model and a two-dimensional flexible beam, respectively. The proposed model was applied to an urban transit Maglev vehicle, UTM01, which is undergoing test drive. As a result of the proposed method, we concluded that it is possible to analyze the dynamic interaction between the Maglev vehicle and the guideway.

  • PDF

Status of Korean Maglev Development and Commercial Application Prospects (도시형 자기부상열차 개발 및 실용화 전망)

  • Kim, In-Kun;Lee, Sang-Rok;Cho, Hung-Je;Yoo, Mun-Hwan;Kim, Bong-Seup;Sung, Ho-Kyung;Lee, Jong-Min
    • Proceedings of the KSR Conference
    • /
    • 2000.05a
    • /
    • pp.55-62
    • /
    • 2000
  • The status of the maglev development in Korea is reported along with related commercial application prospects. The 1st test vehicle, Urban Transit Maglev-01, is in the running tests, and is now entered a new phase in which a new vehicle be built within 3 years. Eventhough Korean maglev teams made remarkable progress for 10 years since 1990, major portion of the works to prove safety and reliability remains for the future. Many LRT routes are being planned by the Korean government and UTM will find its commercial application if we can prove many merits of the maglev system plus its reliability. But the commercial application efforts did not produce any outcome at the time because the customer wasn't totally satisfied with the new system and also, they decided it wasn't urgently needed.

  • PDF

Simulation of the Maglev Running on the Flexible Guideway (궤도의 유연성을 고려한 자기부상열차 주행 시뮬레이션)

  • Han Hyung-Suk;Kim Dong-Sung;Lee Jong-Min
    • Proceedings of the KSR Conference
    • /
    • 2005.11a
    • /
    • pp.113-118
    • /
    • 2005
  • Maglev vehicles, which are levitated and propelled by electromagnets, often run on elevated flexible guideways comprised of steel, aluminum and concrete. Therefore. an analysis of the dynamic interaction between the Maglev vehicle and the flexible guideway is needed in the design of the critical speed, ride, controler design and weight reduction of the vehicle. This study introduces a dynamic interaction simulation technique that applies structural dynamics. Because the proposed method uses FEM, it is useful to calculate the deformation of the elevated flexible guideway, the dynamic stress, and the motion of the vehicle. By applying the proposed method to an urban transit Maglev vehicle, UTM01, the dynamic response is simulated and validated. From the result of the study, we concluded, that the dynamic interaction between the maglev vehicle and the flexible guideway is possible.

  • PDF

Vibration Characteristic of Full Weight Case Maglev Vehicle Running at Switching System (만차 조건 자기부상열차의 분기기 구간 주행 시 진동 특성)

  • Shin, Hyeon-Jae;Lee, Jong-Min;Kim, Chang-Hyun
    • Proceedings of the KSR Conference
    • /
    • 2011.10a
    • /
    • pp.678-684
    • /
    • 2011
  • In 2013, Korea will become the world's second country to operate the urban Maglev system with the inauguration of demonstration line at Incheon International Airport. A prototype Maglev is under the test at KIMM's(Korea Institute of Machinery & Materials, Daejeon) track. This Maglev is an EMS(Electromagnetic suspension)-type vehicle of controlled $8{\pm}3mm$ air gap. The air gap between electromagnet and the guiderail in an EMS-type Maglev must be maintained within an allowable deviation by controlling the magnet. The air gap response is strongly dependent on the structural characteristics of the elevated guideway. For this reason, the interaction between the vehicle with electromagnets and the elevated guideway must be understood to ensure safe running. The purpose of this paper is to compare vibration characteristics of the vehicle on the switching system and other sections when the full weight condition of urban maglev vehicle that 26.5 tons per car(empty car weight 19 tons + passenger condition 7.5 tons), is applied. Through such results, Maglev vehicles and switching system can be established and the levitation stability can be improved.

  • PDF

Levitation and Guidance Control of Super Speed Maglev Trains (초고속 자기부상열차의 부상 및 안내 제어)

  • Kim, Chang-Hyun;Lee, Jong-Min;Kim, Bong-Seup;Han, Hyung-Suk
    • Proceedings of the KSR Conference
    • /
    • 2011.10a
    • /
    • pp.3079-3085
    • /
    • 2011
  • Through Korean Urban Maglev Program started in 2006, an urban maglev train was developed and the demonstration line is under construction as of now in 2011. The target speed of the developed maglev train is 110km/h, and the core technologies for super speed maglev trains over 500km/h are being studied. The propulsion and levitation systems of the super speed maglev train under consideration consist of linear synchronous motors (LSM) and levitation electromagnets which also act as a mover of LSM. In addition, guidance electromagnets are used to ensure stable running on curved tracks during super speed operation. The levitation and guidance control is focused on in this paper. For experimental purpose, a small maglev train is being manufactured, and its levitation and guidance controller is studied. The main task of the controller is to maintain the gap between the corresponding electromagnet and the guideway constantly. In general, measurements of the gap, acceleration and current and so on are utilized, and the gap control is implemented independently for each electromagnet. In this paper, the levitation and guidance system is modelled considering mechanical interactions, and the levitation and guidance controller is proposed based on this model. The developed controller is verified by various simulations using MATLAB/Simulink.

  • PDF