• Title/Summary/Keyword: 판넬기여도해석

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A Design Process for Structural Borne Noise using Panel Contribution and Design Sensitivity (판넬기여도와 설계민감도를 이용한 구조기인소음 설계프로세스)

  • Kim, Hyo-Sig;Kim, Heon-Hee;Cho, Hyo-Jin;Yoon, Seong-Ho
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2007.11a
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    • pp.806-811
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    • 2007
  • In this study, we propose a more systematic design process for the structure-borne noise. The proposed way consists of 4 steps: Problem definition, Cause analysis, Development of counter-measure and Validation. Especially, we improved the second step: Cause analysis. According to the PCA(Panel Contribution Analysis), a reduction in vibration of the panels of which panel contribution is positive and larger, results in a reduction in structure-borne noise. We have, however, met the case in which the concept of PCA is no valid in a few vehicle tests. In order to understand this phenomenon, we compared the major panels selected by PCA with the one chosen by DSA(Design Sensitivity Analysis). After investigating the difference between the two results, a more improved process is suggested. The proposed one for the second step in the design process consists of not only the previous way: PCA with deformation analysis results but also DSA. It is finally validated that the proposed design process decreases the sound pressure of the concerned noise transfer function more than 3.5 dB.

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Transfer Path Analysis (전달경로 해석 사례)

  • Lee, Sang-Yeop
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2010.05a
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    • pp.349-349
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    • 2010
  • 전달 경로 해석 기법은 NVH 문제 해결 프로세스에서 자주 사용되는 기법으로서 소음원 X 전달 경로= 응답 모델을 사용한 접근방식입니다. 수음(응답)점에서 문제의 진동 및 소음 응답을 고체 및 공기 음원이 응답에 미치는 기여도 또는 개별 경로, 모드, 판넬 기여도의 합으로 세분화하여 표시함으로써, 문제의 원인을 규명하고, 문제 해결 및 대책 방안에 대한 통찰력을 제시하며, NVH 문제의 해결을 위해 사용되는 필수적인 도구입니다. 본 강좌에서는 건물에 설치되는 설비의 작동 시 고체 음원 평가 및 철도 소음의 공기음과 구조음 기여도 평가를 위해 적용된 전달 경로 해석 기법 사례를 소개할 것입니다. 설비 작동시의 전달 경로 해석 기법에 의해 평가된 고체 음원의 신뢰성 확보를 위하여 $\bullet$ 직접 측정된 하중 데이터와 역행렬 기법에 의해 예측된 하중 비교 및 $\bullet$ 가진 햄머로 가진시의 가진력과 측정된 가속도 신호를 사용하여 역행렬 기법으로 계산된 하중의 비교를 수행하였습니다. 철도 소음의 공기음 및 고체음 기여도 평가를 위해서는 $\bullet$ 열차 주행중 철로에서 측정된 가속도를 사용하여 철로면에 가해지는 하중을 역행렬 기법으로 계산하였으며 $\bullet$ 철로 주변에서 거리별 측정된 소음중, 고체음의 기여도 파악을 위해서, 전달 경로 해석기법으로 예측된 고체음과 측정된 소음을 비교하였습니다.

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Improved Design Process for Interior noise in Passenger Vehicles (자동차 실내소음을 위한 개선된 설계 프로세스)

  • Kim, Hyo-Sig;Kim, Heon-Hee;Yoon, Seong-Ho
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2008.04a
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    • pp.974-979
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    • 2008
  • A design process for the structure-borne noise in a passenger vehicle is presented. The proposed process is improved from the previous one. The major difference between the current and last ones is that most of the countermeasures should be developed before fixing a tool for structural parts. This is requested for QCDP(Quality, Cost, Delivery and Productivity) by the design engineers. The proposed one consists of 4 steps: Problem definition, Cause analysis, Development of counter-measure and Validation. Based on the general rule: divide and conquer, the complex problem can be simplified into a few critical sub-systems through the first step: Problem definition. Secondly, the critical causes can be identified for the critical sub-systems through the second step: Cause analysis. Thirdly, effective countermeasures are investigated and produced through the third step: Countermeasure development. The proposed countermeasures are finally validated in the forth step: Validation.

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Noise Reduction of PDP TV Using Multi-dimensional Spectral Analysis Method (다차원 스펙트럼 해석법을 이용한 PDP TV의 저소음화)

  • Yang, In-Hyung;Jeong, Jae-Eun;Kwak, Hyung-Taek;Oh, Jae-Eung
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.21 no.1
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    • pp.81-88
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    • 2011
  • The method is introduced for estimating the noise source contribution on the noise of PDP TV in a multiple-input system where the input sources may be coherent with each other. By the coherence function method, it is found that the biggest part of the noise source in the PDP TV noise is generated by the PCB boards which consume high power and produce high heat. This analysis is modeled as three-input/single-output system because the noise is generated by three main boards, X-board, Y-board, SMPS that are located close to each other. The coherence function method is proved to be useful tool for identifying of noise source. In this study, Transfer Path Analysis using MDSA is implemented to determine the quantitative noise contribution of each board for PDP TV with the rear case closed and with the rear case open. And the possibility of noise reduction is confirmed through the experimental method that isolates the most contributing board by adding sound-absorbing materials to it.