• 제목/요약/키워드: 전달손실 최대화

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전달손실 최대화를 위한 흡음재-패널 배열 최적설계 (Sound Transmission Loss Maximization of Multi-panel Structures Lined with Poroelastic Materials by Topology Optimization)

  • 김용진;이중석;강연준;김윤영
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2008년도 추계학술대회논문집
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    • pp.728-733
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    • 2008
  • Though multi-panel structures lined with a poroelastic material have been widely used to reduce sound transmission in various fields, most of the previous works to design them were conducted by repeated analyses or experiments based on initially given configurations or sequences. Therefore, it was difficult to obtain the optimal sequence of multi-panel structures lined with a poroelastic material yielding superior sound isolation capability. In this work, we propose a new design method to sequence a multi-panel structure lined with a poroelastic material having maximized sound transmission loss. Being formulated as a one-dimensional topology optimization problem for a given target frequency, the optimal sequencing of panel-poroelastic layers is systematically carried out in an iterative manner. In this method, a panel layer is expressed as a limiting case of a poroelastic layer to facilitate the optimization process. This means that main material properties of a poroelastic material are treated as Interpolated functions of design variables. The designed sequences of panel-poroelastic layers were shown to be significantly affected by the target frequencies; more panel layers were used at higher target frequencies. The sound transmission loss of the system was calculated by the transfer matrix derived from Biot's theory.

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전달손실 최대화를 위한 공기-흡음재 배열 최적설계 (One-dimensional Topology Optimization for Transmission Loss Maximization of Multi-layered Acoustic Foams)

  • 이중석;김윤영;김정수;강연준;김은일
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2006년도 추계학술대회논문집
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    • pp.938-941
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    • 2006
  • We present a new design method of one-dimensional multi-layered acoustic foams for transmission loss maximization by topology optimization. Multi-layered acoustic foam sequences consisting of acoustic air layers and poroelastic material layers are designed for target frequency values. For successful topology optimization design of multi-layered acoustic foams, the material interpolation concept of topology optimization is adopted. In doing so, an acoustic air layer is modeled as a limiting poroelastic material layer; acoustic air and poroelastic material are handled by a single set of governing equations based on Biot's theory. For efficient analysis of a specific multi-layered foam appearing during optimization, we do not solve the differential equations directly, but we use an efficient transfer matrix approach which can be derived from Biot's theory. Through some numerical case studies, the proposed design method for finding optimal multi-layer sequencing is validated.

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전달손실 최대화를 위한 다층 흡음재-패널 배열 최적설계 (Optimization of Multilayered Foam-panel Sequence for Sound Transmission Loss Maximization)

  • 김용진;이중석;강연준;김윤영
    • 한국소음진동공학회논문집
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    • 제18권12호
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    • pp.1262-1269
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    • 2008
  • Though multilayered foam-panel structures have been widely used to reduce sound transmission in various fields, most of the previous works to design them were conducted by repeated analyses or experiments based on initially given configurations or sequences. Therefore, it was difficult to obtain an optimal sequence of multilayered foam-panel structure yielding superior sound isolation capability. In this work, we propose a new design method to sequence a multi-panel structure lined with a poroelastic material having maximized sound transmission loss. Being formulated as a one-dimensional topology optimization problem fur a given target frequency, the optimal sequencing of panel-poroelastic layers is systematically carried out in an iterative manner. In this method, a panel layer is expressed as a limiting case of a poroelastic layer to facilitate the optimization process. This means that main material properties of a poroelastic material are treated as interpolated functions of design variable. The designed sequences of panel-poroelastic multilayer were shown to be significantly affected by the target frequencies; more panels were obtained at higher target frequency. The sound transmission loss of the system was calculated by the transfer matrix derived from Biot's theory.

전달손실 최대화를 위한 위상최적화기반 1차원 흡차음시스템의 최적 배열 설계 (Optimal sequencing of 1D acoustic system for sound transmission loss maximization using topology optimization method)

  • 김은일;이중석;김윤영;김정수;강연준
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2007년도 정기 학술대회 논문집
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    • pp.309-314
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    • 2007
  • Optimal layer sequencing of a multi-layered acoustical foam is solved to maximize its sound transmission loss. A foam consisting of air and poroelastic layers can be optimized when a limited amount of a poroelastic material is allowed. By formulating the sound transmission loss maximization problem as a one dimensional topology optimization problem, optimal layer sequencing and thickness were systematically found for several frequencies. For optimization, the transmission losses of air and poroelastic layers were calculated by the transfer matrix derived from Biot's theory. By interpolating five intrinsic parameters among several poroelastic material parameters, dear air-poroelastic layer distributions were obtained; no filtering or post-processing was necessary. The optimized foam layouts by the proposed method were shown to differ depending on the frequency of interest.

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강화학습을 통한 시간에 엄격한 패킷 스케쥴링 (Time Critical Packet Scheduling via Reinforcement Learning)

  • 정현석;이태호;이병준;김경태;윤희용
    • 한국컴퓨터정보학회:학술대회논문집
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    • 한국컴퓨터정보학회 2018년도 제58차 하계학술대회논문집 26권2호
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    • pp.45-46
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    • 2018
  • 본 논문에서는 시간에 엄격한(Time critical) 산업용 IoT(Industrial IoT) 환경의 무선 센서 네트워크 시스템 상의 효율적인 패킷 전달과 정확도(Accuracy) 향상을 위해 강화학습과 EDF 알고리즘을 혼합한 스케쥴링 기법을 제안한다. 이 방식은 다중 대기열(Multiple queue) 환경에서 각 대기열의 요구 정확도(Accuracy Requirement)를 기준으로 최대한 패킷 처리를 미룸으로써 효율적인 CPU자원 분배와 패킷 손실율(Packet Loss)을 조절한다. 제안하는 기법은 무선 센서 네트워크 상의 가변적이고 예측 불가능한 환경에 대한 사전지식이 없이도 요구하는 서비스의 질(Quality of service)를 만족할 수 있도록 한다. 또한 정확도를 요구조건으로 제시하여 마감시간이 중요시되는 작업에서도 효율을 최대화한다.

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ICARP: 기회적 에너지 하베스팅 무선 네트워크를 위한 간섭 기반 충전 인지 라우팅 프로토콜 (ICARP: Interference-based Charging Aware Routing Protocol for Opportunistic Energy Harvesting Wireless Networks)

  • 김현태;나인호
    • 한국지능시스템학회논문지
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    • 제27권1호
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    • pp.1-6
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    • 2017
  • 최근의 에너지 하베스팅(energy harvesting) 무선 네트워크에 대한 연구는 제한된 에너지 자원 문제를 해결하여 효율적으로 네트워크 수명을 연장할 수 있는 기법 개발에 집중되고 있다. 에너지 하베스팅을 통해 획득할 수 있는 에너지의 양과 효율을 향상시키기 위해서는 여러 가지 에너지 하베스팅 특성을 종합적으로 고려하여 에너지 획득과 데이터 전송을 병행하는 네트워크 구조를 설계하는 매우 중요하다. 본 논문에서는 수신측에서 간섭 정보와 충전 시간을 고려하여 네트워크 내의 에너지 하베스팅 용량을 최대화하면서 종단간 지연 시간을 최소화할 수 있는 간섭 기반의 충전 인지 라우팅 프로토콜(ICARP)을 제안한다. 이를 위해 기회적 에너지 하베스팅 무선 네트워크에서 종단간 지연시간을 최소화할 수 있도록 충전 시간을 패킷 전달의 지연 성분을 적용한 새로운 간섭 기반 충전 인지 라우팅 기준(routing metric)과 ICARP를 설계하였다. 본 논문에서 제시한 라우팅 기법을 통한 전달 지연시간의 단축은 패킷손실이나 재전송으로 인한 에너지 소비량을 줄이는 효과를 얻을 수 있다. 시뮬레이션을 이용한 성능평가를 통하여 제안된 기법이 기존의 라우팅 기법보다 패킷전달율과 종단간 지연시간 측면에서 성능이 향상됨을 보였다.