• Title/Summary/Keyword: High-speed trains

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Interior noise of a KTX vehicle in a tunnel (KTX 차량의 터널 통과 시 소음특성)

  • Choi, Sung-Hoon;Kim, Jae-Chul;Lee, Chan-Woo;Cho, Jun-Ho
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2004.11a
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    • pp.49-52
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    • 2004
  • High-speed trains with the maximum speed of 300 km/h have started revenue services since April 2004. A large portion of the 'Kyung-Bu' line is comprised of tunnels or bridges, which may cause excessive noise in a vehicle. The vibration generated by the trains propagates into the structure of the tunnel and the vehicle and it can be radiated as noise inside the vehicle interior. This noise can usually be heard as low frequency structure-borne noise. Measurement of the noise and vibration inside the KTX vehicle confirmed that the noise comprises of frequencies below 250 Hz with a couple of broad peaks.

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Technologies for Robotized Welding of Big Aluminium Structures with Tolerances for High Speed Trains (고속 열차용 대형 알루미늄 부품의 GAP 대응 로봇 자동화 용접 기술)

  • Lee, Sang Chul
    • Journal of Welding and Joining
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    • v.31 no.1
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    • pp.33-37
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    • 2013
  • Robotized MIG welding of large aluminium components for high speed trains is state-of-the-art. The implementation of online laser cameras enables seam tracking and adoptive modification of welding parameters. A constant fill is achieved regardless of the gap tolerances. Friction Stir Welding has been introduced to the market as a reliable and fast joining technology. The advantages of high welding speeds and the elimination of arc light, fumes and liquefaction in the welding spot lead to economical realisation of heavy-duty gantry systems. FSW robots offer a high flexibility with regard to welding of curved parts, and can be equipped with laser cameras for exact joint tracking.

Numerical Analysis of Transmission Loss Prediction in High Speed Trains (전산해석을 이용한 동력 분산형 고속철도차량의 투과손실 예측)

  • Kim, Tae-Min;Kim, Jeung-Tae;Kim, Jung-Soo;Kim, Soo-Young
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.20 no.8
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    • pp.703-709
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    • 2010
  • An analysis tool for predicting transmission loss in high speed trains based on combined use of the statistical energy analysis and the finite element methods has been proposed. The analysis utilizes a commercially available numerical solver VA ONE with imbedded NASTRAN module. The proposed analysis tool is first verified by comparing numerically predicted transmission loss of a light rail transport(LRT) structure with experimental results. The comparison shows that the numerically predicted transmission loss is similar to the experimental data. The analysis tool is then applied to the prediction of transmission loss in the high speed train(HST) currently under development. Various sub-structures such as the floor, side panel and ceiling have been numerically analyzed to predict their transmission losses. The results obtained here can be used as input data for predicting the interior noise level of the HST at design stage.

Vibration suppression in high-speed trains with negative stiffness dampers

  • Shi, Xiang;Zhu, Songye;Ni, Yi-qing;Li, Jianchun
    • Smart Structures and Systems
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    • v.21 no.5
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    • pp.653-668
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    • 2018
  • This work proposes and investigates re-centering negative stiffness dampers (NSDs) for vibration suppression in high-speed trains. The merit of the negative stiffness feature is demonstrated by active controllers on a high-speed train. This merit inspires the replacement of active controllers with re-centering NSDs, which are more reliable and robust than active controllers. The proposed damper design consists of a passive magnetic negative stiffness spring and a semi-active positioning shaft for re-centering function. The former produces negative stiffness control forces, and the latter prevents the amplification of quasi-static spring deflection. Numerical investigations verify that the proposed re-centering NSD can improve ride comfort significantly without amplifying spring deflection.

Time-varying Harmonics Measurement and Evaluation of the High Speed Electric Train Loads (시간에 따라 변하는 고속철 부하의 고조파 측정 및 평가)

  • Jin, Seong-Eun;Kim, Kyung-Chul;Lee, Joo-Hong;Jeon, Young-Soo
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.20 no.7
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    • pp.29-37
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    • 2006
  • High speed electric trains have nonlinear loads including converters and inverters for the control synchronous motors. Harmonics produced by these devices are large, but also have noticeable time varying characteristics. Since the large loads are supplied from the power system grid, it must be recognized that not only will the system of utility be impacted, but neighboring customer system could be impacted as well. In this paper time-varying harmonics for high speed electric train loads are measured and evaluated by international harmonic standards IEEE Std. 519 and IEC 61000-3-6 using a cumulative probablistic approach.

A Study on the Harmonics and Flickers Measurement of High Speed Electric Train Loads (고속열차 부하의 고조파 및 플리커 측정에 관한 연구)

  • Kim, Kyung-Chul;Kim, You-June
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.21 no.2
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    • pp.71-77
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    • 2007
  • High speed electric trains have time-varying nonlinear loads causing voltage fluctuations to the power system. A cumulative probablistic approach is the most commonly used method to solve time varying loads. Flicker can be defined as the effect produced on the human visual perception by a changing emission of light lamps subjected to magnitude fluctuations of their supply voltage. This paper provides an in depth analysis on harmonics and flickers measurement of the high speed electric train loads. And the measurement results are evaluated by the IEC 61000-3-6 and IEC 61000-3-7.

A Test Study on Interface Dynamics of Current Collection System in High Speed Trains

  • Kim, Jung-Soo;Han, Jae-Hyun
    • International Journal of Railway
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    • v.4 no.2
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    • pp.34-41
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    • 2011
  • Using a test run data, the dynamics of the interface between the catenary and pantograph constituting the current collection system in high-speed trains are investigated. The test run signals are analyzed to determine the dynamic parameters critical to the current collection performance. There are found to be frequency components of the pantograph motion that are dependent on train speed as well as components that are stationary such as the resonant mode of the panhead suspension in the pantograph. From contact force measurement using load cell, the mean contact force was found to be stable while the fluctuating component was found to be dependent on the range of the frequency of the pantograph motion taken into account. The finding implies that numerical investigations reported in the literature that are based on lumped element models of the catenary and/or pantograph provide accurate predictions on the mean value but are of limited use in estimating fluctuation of the contact force. It is concluded that simulation studies based on lumped-element models which do not incorporate panhead structural vibration modes is inaccurate at high train speeds.

A Study on Interior Noise Characteristics of High-speed Trains (고속철도 차량의 실내소음 특성 연구)

  • Noh, Hee-Min;Choi, Sunghoon;Kim, Seog-Won;Hong, Suk-Yoon
    • Journal of the Korean Society for Railway
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    • v.16 no.1
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    • pp.14-19
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    • 2013
  • Because excessive interior noise when riding a high-speed train leads to annoyances, fatigue and stress for passengers, interior noise reduction methods should be considered. In particular, a high-speed train operated in various operation environments, and in South Korea, these include open fields and tunnels. Therefore, a specific study about changes in interior noise characteristics according to different environments is necessary. For this reason, the interior noise characteristics on a KTX train and on the KTX-Sancheon train were analyzed from noise measurements using microphones in this paper. Vibrations on the axles, bogies and floor were also measured, are these area are structural paths for interior noise. From this research, the interior noise characteristics according to the driving speed were deduced and the effects on interior noise by driving environments such as open fields and tunnels were investigated. Furthermore, the effect on interior noise by axles, bogies and floor vibrations were analyzed from a transfer function analysis.

A Study on the Countermeasures for Accreted Snow and Ice on Seoul-Busan High-speed Line Considering the Climate Condition (겨울철 기후조건을 고려한 경부고속선 설빙대책 수립방안 연구)

  • Han Jin-Seok;Kwon Hycok-Bin
    • Proceedings of the KSR Conference
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    • 2004.10a
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    • pp.302-307
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    • 2004
  • When trains run over a snow-covered track at high speed, the snow accereted under car bodies may drop during train running. The dropped snow/ice lumps scatter the ballast on the track damaging the car body and the environment along the track in snowy regions. In this study, the snow-fall condition in winter around the Seoul-Busan high-speed line has been investigated to yield the countermeasure for the high-speed line. The climate near Japanese and French high-speed line as well as the relationship between the climate and countermeasure has also been investigated and the direction of countermeasure for Seoul-Busan high-speed line has been deduced. Consequently, the amount and frequency of snow-fall near Seoul-Busan high-speed line is less than that of Japan and France, so the speed restriction could be the fundamental countermeasure for Seoul-Busan high-speed line, and additional measure on rolling stock and infrastructure should be followed.

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Development of the Vibration & Noise Analysis and Reduction Technology for High Speed Train: G-7 Project Outline and Research Direction (고속전철 진동소음해석 및 저감기술개발: G-7과제개요 및 연구방향)

  • 이우식;박철희
    • Proceedings of the KSR Conference
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    • 1998.05a
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    • pp.221-232
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    • 1998
  • This paper introduces the outline of the ongoing G-7 project for the development of vibration and noise analysis and reduction technology for the Korea High Speed Train which will run at 350km/h. Extensively collected materials and data on the vibration and noise characteristics of high speed trains are summarized herein to reduce the research direction.

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