• 제목/요약/키워드: Dynamic Demands

검색결과 364건 처리시간 0.027초

Seismic pounding between adjacent buildings considering soil-structure interaction

  • Raheem, Shehata E Abdel;Alazrak, Tarek M.A.;AbdelShafy, Aly G.A.;Ahmed, Mohamed M.;Gamal, Yasser A.S.
    • Earthquakes and Structures
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    • 제20권1호
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    • pp.55-70
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    • 2021
  • In urban cities, buildings were built in the neighborhood, these buildings influence each other through structure-soilstructure interaction (SSSI) and seismic pounding due to limited separation distance in-between. Generally, the effects of the interaction between soil and structure are disregarded during seismic design and analysis of superstructure. However, the system of soil-base adversely changes structural behavior and response demands. Thus, the vibration characteristics plus the seismic response of a building are not able to be independent of those in adjacent buildings. The interaction between structure, soil, and structure investigates the action of the attendance of adjacent buildings to the others by the interaction effect of the sub-soil under dynamic disturbances. The main purpose of this research is to analyze the effects of SSSI and seismic pounding on the behavior of adjacent buildings. The response of a single structure or two adjacent structures with shallow raft base lying on soft soil are studied. Three dimensions finite element models are developed to investigate the effects of pounding; gap distance; conditions of soil; stories number; a mass of adjacent building and ground excitation frequency on the seismic responses and vibration characteristics of the structures. The variation in the story displacement, story shear, and story moment responses demands are studied to evaluate the presence effect of the adjacent buildings. Numerical results acquired using conditions of soil models are compared with the condition of fixed support and adjacent building models to a single building model. The peak responses of story displacement, story moment, and story shear are studied.

내용 기반의 정렬을 통한 HDR 동영상 생성 방법 (HDR Video Reconstruction via Content-based Alignment Network)

  • 정혜수;조남익
    • 방송공학회논문지
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    • 제28권2호
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    • pp.185-193
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    • 2023
  • 최근 인터넷을 통한 동영상 제공 서비스가 확대됨에 따라 높은 품질의 온라인 컨텐츠에 대한 수요가 급증하고 있다. 그런데 넓은 동적 범위 (dynamic range)를 표현할 수 있는 high dynamic range (HDR) 컨텐츠의 공급은 수요를 따라가지 못하고 있는 실정이다. 따라서 본 논문에서는 HDR 영상 제작의 한 방법으로서, 여러 노출값에서 촬영된 프레임들로 구성된 low dynamic range (LDR) 동영상을 이용해 HDR 영상을 생성하는 방법을 제안한다. 우선, 프레임들 사이에 움직임이 존재하기 때문에 정렬 과정을 통해 이웃 프레임들을 중심 프레임에 맞추어 정렬한다. 이때 내용 (content) 기반의 정렬을 하여 정확도를 높이고, 원래 크기의 입력을 그대로 이용하는 모듈을 함께 사용하여 세부 정보도 잘 살려준다. 그러고 나서 잘 정렬된 다중 프레임들을 합쳐서 하나의 HDR 프레임으로 만들어 준다. 실험을 통해 기존 방법들에 비해 우수한 성능을 보임을 확인하였다.

철근 콘크리트 특수 모멘트 골조 건물의 비탄성 동적 요구값 (Inelastic Dynamic Demands of a RC Special Moment Frame Building)

  • 김태완
    • 한국지진공학회논문집
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    • 제9권5호
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    • pp.11-19
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    • 2005
  • 건축 구조물의 내진 설계는 탄성 정적 방법에 기초하고 있으나, 강진시 구조물의 실제 거동은 비탄성 동적이기 때문에 설계 규준의 적합성을 판단하기 위해서는 비탄성 동적 해석이 요구된다. 본 논문에서는 철근 콘크리트 특수 모멘트 저항 골조 건물을 선택하여 IBC 2003에 따라 설계한 후, 선택된 부재들의 최대 소성 회전, 소산 에너지를 구하여, 건물의 비탄성 거동이 규준에서 의도한 거동을 보이는 지를 검토함과 동시에 층간변위률 요구값을 구하여 설계 한도를 만족하는 지를 조사하였다. 더불어 비횡력 저항 시스템인 내부 모멘트 저항 골조의 해석시 포함 여부의 영향도 함께 조사하였다. 해석 결과 IBC 2003에 의해 설계된 건물은 규준이 의도한 비탄성 거동을 보여주었으며 층간변위률 또한 설계한도를 만족하였다. 그리고, 내부 모멘트 저항 골조는 지진 해석 결과에 중요한 영향을 미치므로 해석 모델에 반드시 포함되어야 함을 알수 있었다.

열차 증속에 따른 콘크리트 궤도 노반의 동적 응력 변화 (Dynamic Change of Stresses in Subsoil under Concrete Slab Track Subjected to Increasing Train Speeds)

  • 이태희;최찬용;;정영훈
    • 한국지반공학회논문집
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    • 제29권10호
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    • pp.57-66
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    • 2013
  • 보다 빠른 교통 수단에 대한 사회적 관심이 현재 운영 중인 KTX의 운행속도인 350km/h을 넘어서는 고속 열차의 운행을 요구하고 있다. 본 연구에서는 콘크리트 궤도 구조물에서 열차 속도 변화에 따른 노반 변위의 변화양상을 추적하고 비선형적인 노반 응력 변화를 살펴보기 위해 유한요소해석을 실시하였다. 궤도-차량 상호작용을 간단한 형태로 고려하기 위해 이동 하중의 질점 시스템을 개발하였다. 열차 하중의 이동 속도를 100km/h에서 700km/h까지 변화시켜 결과를 얻었다. 열차 속도 증가에 따라 레일과 노반 변위는 비선형적으로 증가하였으나 뚜렷한 임계 속도 효과는 나타나지 않았다. 낮은 열차 속도 대역에서는 열차 속도보다 노반에서 에너지를 전달하는 탄성파 속도가 빠르다. 하지만 400km/h 이상의 열차 속도 대역에서는 열차 속도와 에너지 전달 속도가 거의 일치하였다. 열차 속도 증가에 따라 노반 응력 이력이 크게 변하며 경로 의존적인 토질 재료에서 상당한 크기의 소성 변형률이 예상된다.

무선 멀티미디어 센서 네트워크에서 에너지 효율적인 동적 영역 압축 기법 (An Energy-Efficient Dynamic Area Compression Scheme in Wireless Multimedia Sensor Networks)

  • 박준호;류은경;손인국;유재수
    • 한국콘텐츠학회논문지
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    • 제13권12호
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    • pp.9-18
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    • 2013
  • 최근 무선 센서 네트워크는 멀티미디어 센서 모듈을 활용한 멀티미디어 데이터 수집을 기반으로 하는 고품질의 모니터링에 대한 요구가 증가하고 있다. 그러나 기존 센서 네트워크에서 수집되는 수치 데이터와 달리 멀티미디어 센서 네트워크에서 수집되는 데이터는 크기가 매우 크므로 데이터를 수집하는 과정에서 특정 노드의 과도한 에너지 소모 및 네트워크 성능 저하 문제가 발생한다. 본 논문에서는 무선 멀티미디어센서 네트워크에서 에너지 효율적인 동적 영역 압축 기법을 제안한다. 제안하는 기법은 중국인의 나머지 정리와 동적 변화 영역 감지 및 분할 알고리즘에 기반을 둔 수집 데이터의 데이터 압축 및 전송을 수행함으로써 대용량 멀티미디어 데이터 전송에서 발생하는 에너지 소모를 최소화한다. 성능평가 결과, 제안하는 기법은 기존 기법에 비해 데이터 압축률은 평균 37% 향상되었고, 데이터 전송량은 평균 56% 감소하였으며, 그에 따른 노드 생존율은 평균 14% 증가함을 보임으로써 그 우수성을 확인하였다.

충격파형 제어를 위한 펄스쉐이퍼의 동적 변형 특성에 관한 연구 (Study on the dynamic deformation characteristics of pulse shapers for controlling the shape of impact waves)

  • 양정훈;조상호;김원범;김승곤;송영수;성낙훈
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2009년도 학술대회 초록집
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    • pp.198-202
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    • 2009
  • 스플릿 홉킨슨 압력 봉(SHPB)실험은 암석 및 콘크리트와 같은 취성재료의 동적 물성과 변형특성을 파악하고 압축 응력-변형율 데이터를 획득하기 위하여 사용된다. SHPB 실험법은 원리상 대상시료가 파괴이전에 동적응력평형 상태와 일정 변형율 속도 조건하여 놓여져 있어야 한다. 이러한 조건을 만족시키기 위하여 충격봉과 입사봉의 충격에 의하여 발생되는 충격 입사파형을 제어할 필요가 있다. 최근에는 원형 디스크를 충격봉과 입사봉 사이에 두어 입사 충격파형을 제어하는 펄스쉐이핑 기법이 적용되고 있다. 본 연구에서는 입사 충격파형을 정밀하게 제어할 목적으로 다양한 형태와 크기의 금속디스크를 대상으로 SHPB 실험을 수행하여 동적 변형 특성을 파악하였다. 펄스쉐이퍼의 두께와 직경이 작아짐에 따라 응력값과 파장은 증가하였다.

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Vertical equipment isolation using piezoelectric inertial-type isolation system

  • Lu, Lyan-Ywan;Lin, Ging-Long;Chen, Yi-Siang;Hsiao, Kun-An
    • Smart Structures and Systems
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    • 제26권2호
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    • pp.195-211
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    • 2020
  • Among anti-seismic technologies, base isolation is a very effective means of mitigating damage to structural and nonstructural components, such as equipment. However, most seismic isolation systems are designed for mitigating only horizontal seismic responses because the realization of a vertical isolation system (VIS) is difficult. The difficulty is primarily due to conflicting isolation stiffness demands in the static and dynamic states for a VIS, which requires sufficient rigidity to support the self-weight of the isolated object in the static state, but sufficient flexibility to lengthen the isolation period and uncouple the ground motion in the dynamic state. To overcome this problem, a semi-active VIS, called the piezoelectric inertia-type vertical isolation system (PIVIS), is proposed in this study. PIVIS is composed of a piezoelectric friction damper (PFD) and a leverage mechanism with a counterweight. The counterweight provides an uplifting force in the static state and an extra inertial force in the dynamic state; therefore, the effective vertical stiffness of PIVIS is higher in the static state and lower in the dynamic state. The PFD provides a controllable friction force for PIVIS to further prevent its excessive displacement. For experimental verification, a shaking table test was conducted on a prototype PIVIS controlled by a simple controller. The experimental results well agree with the theoretical results. To further investigate the isolation performance of PIVIS, the seismic responses of PIVIS were simulated numerically by considering 14 vertical ground motions with different characteristics. The responses of PIVIS were compared with those of a traditional VIS and a passive system (PIVIS without control). The numerical results demonstrate that compared with the traditional and passive systems, PIVIS can effectively suppress isolation displacement in all kinds of earthquake with various peak ground accelerations and frequency content while maintaining its isolation efficiency. The proposed system is particularly effective for near-fault earthquakes with long-period components, for which it prevents resonant-like motion.

Match Field based Algorithm Selection Approach in Hybrid SDN and PCE Based Optical Networks

  • Selvaraj, P.;Nagarajan, V.
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제12권12호
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    • pp.5723-5743
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    • 2018
  • The evolving internet-based services demand high-speed data transmission in conjunction with scalability. The next generation optical network has to exploit artificial intelligence and cognitive techniques to cope with the emerging requirements. This work proposes a novel way to solve the dynamic provisioning problem in optical network. The provisioning in optical network involves the computation of routes and the reservation of wavelenghs (Routing and Wavelength assignment-RWA). This is an extensively studied multi-objective optimization problem and its complexity is known to be NP-Complete. As the exact algorithms incurs more running time, the heuristic based approaches have been widely preferred to solve this problem. Recently the software-defined networking has impacted the way the optical pipes are configured and monitored. This work proposes the dynamic selection of path computation algorithms in response to the changing service requirements and network scenarios. A software-defined controller mechanism with a novel packet matching feature was proposed to dynamically match the traffic demands with the appropriate algorithm. A software-defined controller with Path Computation Element-PCE was created in the ONOS tool. A simulation study was performed with the case study of dynamic path establishment in ONOS-Open Network Operating System based software defined controller environment. A java based NOX controller was configured with a parent path computation element. The child path computation elements were configured with different path computation algorithms under the control of the parent path computation element. The use case of dynamic bulk path creation was considered. The algorithm selection method is compared with the existing single algorithm based method and the results are analyzed.

A Novel Compressed Sensing Technique for Traffic Matrix Estimation of Software Defined Cloud Networks

  • Qazi, Sameer;Atif, Syed Muhammad;Kadri, Muhammad Bilal
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제12권10호
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    • pp.4678-4702
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    • 2018
  • Traffic Matrix estimation has always caught attention from researchers for better network management and future planning. With the advent of high traffic loads due to Cloud Computing platforms and Software Defined Networking based tunable routing and traffic management algorithms on the Internet, it is more necessary as ever to be able to predict current and future traffic volumes on the network. For large networks such origin-destination traffic prediction problem takes the form of a large under- constrained and under-determined system of equations with a dynamic measurement matrix. Previously, the researchers had relied on the assumption that the measurement (routing) matrix is stationary due to which the schemes are not suitable for modern software defined networks. In this work, we present our Compressed Sensing with Dynamic Model Estimation (CS-DME) architecture suitable for modern software defined networks. Our main contributions are: (1) we formulate an approach in which measurement matrix in the compressed sensing scheme can be accurately and dynamically estimated through a reformulation of the problem based on traffic demands. (2) We show that the problem formulation using a dynamic measurement matrix based on instantaneous traffic demands may be used instead of a stationary binary routing matrix which is more suitable to modern Software Defined Networks that are constantly evolving in terms of routing by inspection of its Eigen Spectrum using two real world datasets. (3) We also show that linking this compressed measurement matrix dynamically with the measured parameters can lead to acceptable estimation of Origin Destination (OD) Traffic flows with marginally poor results with other state-of-art schemes relying on fixed measurement matrices. (4) Furthermore, using this compressed reformulated problem, a new strategy for selection of vantage points for most efficient traffic matrix estimation is also presented through a secondary compression technique based on subset of link measurements. Experimental evaluation of proposed technique using real world datasets Abilene and GEANT shows that the technique is practical to be used in modern software defined networks. Further, the performance of the scheme is compared with recent state of the art techniques proposed in research literature.

Frequency Window Method에 의한 Secondary 구조 시스템의 진동특성 (Frequency Window Method for the Vibration of Secondary Structural Systems)

  • 민경원
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 1991년도 춘계학술대회논문집; 한국해사기술연구소, 대전; 1 Jun. 1991
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    • pp.153-158
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    • 1991
  • Recently, demands on light weight, high strength, and low noise or vibration have led to the design of complicated structural systems. Although finite elements [1], mode synthesis [2], and statistical energy analysis [3] can be used to compute the dynamic response of such systems, the structural complexity has made the interpretation of the results of such analysis difficult. Many researchers in dynamic analysis have sought to further develop existing theories or develop alternate methods to obtain greater insight in the behavior of large massive primary systems (P systems) with connected light secondary systems (S systems). Some recent research includes work by Sackman and Kelly [4], Sackman et al.[5], Der Kiureghian et al.[6], and Igusa and Der Kiureghian [7-9] who have combined mode synthesis concepts, matrix algebraic theory, and perturbation methods for characterizing weakly-coupled structural systems. A major limitation of these works are that they are limited to lumped mass S systems. In this paper, the general ideas in the Refs.[4-9] are used to study continuous S systems and the method to reduce the complexity, studied in the works by Igusa, Achenbach, and Min [10,11], is developed into the frequency window method.

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