• Title/Summary/Keyword: Compact modeling

검색결과 165건 처리시간 0.026초

A Modeling Study of Co-transcriptional Metabolism of hnRNP Using FMR1 Gene

  • Ro-Choi, Tae Suk;Choi, Yong Chun
    • Molecules and Cells
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    • 제23권2호
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    • pp.228-238
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    • 2007
  • Since molecular structure of hnRNP is not available in foreseeable future, it is best to construct a working model for hnRNP structure. A geometric problem, assembly of $700{\pm}20$ nucleotides with 48 proteins, is visualized by a frame work in which all the proteins participate in primary binding, followed by secondary, tertiary and quaternary binding with neighboring proteins without additional import. Thus, 40S hnRNP contains crown-like secondary structure (48 stemloops) and appearance of 6 petal (octamers) rose-like architectures. The proteins are wrapped by RNA. Co-transcriptional folding for RNP fibril of FMR1 gene can produce 2,571 stem-loops with frequency of 1 stem-loop/15.3 nucleotides and 53 40S hnRNP beaded structure. By spliceosome driven reactions, there occurs removal of 16 separate lariated RNPs, joining 17 separate beaded exonic structures and anchoring EJC on each exon junction. Skipping exon 12 has 5'GU, 3'AG and very compact folding pattern with frequency of 1 stem-loop per 12 nucleotides in short exon length (63 nucleotides). 5' end of exon 12 contains SS (Splicing Silencer) element of UAGGU. In exons 10, 15 and 17 where both regular and alternative splice sites exist, SS (hnRNP A1 binding site) is observed at the regular splicing site. End products are mature FMR-1 mRNP, 4 species of Pri-microRNAs derived from introns 7,9,15 and 3'UTR of exon17, respectively. There may also be some other regulatory RNAs containing ALU/Line elements as well.

경사하중에 따른 시멘트 유지형 임플란트 지지골의 유한요소법 응력 분포 (Finite Element Analysis of Stress Distribution on Supporting Bone of Cement Retained Implant by Oblique Loading)

  • 이명곤
    • 한국콘텐츠학회논문지
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    • 제14권9호
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    • pp.343-349
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    • 2014
  • 본 연구는 치과 임상에서 사용하고 있는 시멘트 유지형 치과용 임플란트의 지지골 응력 분포 안정성을 확인하고자 시행하였다. 모델링과 유한요소 응력 분석은 유한요소 해석 프로그램인 Solidworks를 사용하였고, 시멘트 유지형 임플란트 시스템인 지대주와 고정체를 연결하는 지대주 나사를 20 Ncm 나사조임력에 의한 결합조건을 적용시킨 단관 모델을 제작하고, 설측에서 협측으로의 $45^{\circ}$ 경사로 100 N 크기 외부하중을 가하여 지지골 응력 분포 해석을 실시하였다. 경사하중에 따른 임플란트 고정체의 지지골 응력 크기와 분포를 파악하기 위한 유한요소법 분석을 통해 다음 결과를 얻었다. 고정체 직경, 길이의 조건에 관계없이 임플란트 고정체 상부와 골 접촉부인 치밀골에 응력이 집중되는 양상으로 나타났고, 고정체 길이 증가로 인한 응력 감소 폭보다 직경 증가로 인한 감소폭이 큰 것으로 나타났다 따라서 본 연구 결과는 지지골 형태 조건에 대하여 가능한 큰 직경의 고정체 사용이 효과적이라고 판단된다.

배터리 내장형 초소형 태양광 장치용 PV MPPT 및 충방전 제어 알고리즘 (The PV MPPT & Charge and Discharge Algorithm for the Battery Included Solar Cell Applications)

  • 김승민;박봉희;최주엽;최익;이상철;이동하
    • 한국태양에너지학회 논문집
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    • 제33권5호
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    • pp.69-75
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    • 2013
  • To increase the efficiency of the photovoltaic, almost photovoltaic appliances are controlled by Maximum Power Point Tracking(MPPT). Existing most of the PV MPPT techniques have used power which multiplies sensed output current and voltage of the solar cell. However, these algorithms are unnecessarily complicated and too expensive for small and compact system. The other hand, the proposed MPPT technique is only one sensing of the MPPT converter's output current, so there is no need to insert another sensors of battery side. Therefore, this algorithm is simpler compared to the traditional approach and is suitable for low power solar system. Further, the novel proper charge/discharge algorithm for the battery with PV MPPT is developed. In this algorithm, there is CC battery charge mode and load discharge mode of the PV cell & battery dual. Also we design current control to regulate allowable current during the battery charging. The proposed algorithm will be applicable to battery included solar cell applications like solar lantern and solar remote control car. Finally, the proposed method has been verified with computer simulation.

소형위성용 통합형 전장박스의 개발 및 성능검증 (Development and Performance Validation of Integrated Bus Electronic Unit for Small Satellite)

  • 장진수;김동운;강석진;이병훈;문병영;장영근
    • 한국항공우주학회지
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    • 제35권4호
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    • pp.353-362
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    • 2007
  • 대형위성과 달리 나노위성이나 마이크로위성과 같은 소형위성의 경우, 전장품을 장착하기 위한 위성 내부 공간은 극히 제한되어 있다. 이러한 문제를 완화하기 위해 나노위성 HAUSAT-2는 대부분의 서브시스템과 탑재체의 전장모듈들을 통합한 일체형 위성 버스전장박스(BEU; Bus Electronic Unit)를 개발하였다. 본 논문에서는 개발된 BEU의 설계, 환경시험 결과 및 성능 분석에 대해 기술하였다. 진동 및 열진공 시험은 새로 개발된 BEU의 설계 여유 검증을 위해 인증(qualification) 수준으로 수행하였다. 인증시험 전후의 성능시험을 통해 각 서브모듈들이 정상적으로 작동하는 것을 확인하였다. 진동시험 결과 BEU는 구조적인 손상 없이 설계 강성조건을 만족하는 것을 검증하였으며, 열해석 모델링의 보정을 통해 열진공시험과 거의 일치하는 결과를 얻게 되었다.

웹 서비스 기반 e-비즈니스 응용 프로그램 통합 프레임워크 (A Web Services based e-Business Application Integration Framework)

  • 이성독;한동수
    • 한국정보과학회논문지:컴퓨팅의 실제 및 레터
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    • 제11권6호
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    • pp.514-530
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    • 2005
  • 본 논문은 인터넷에 연결된 여러 형태의 플랫폼 상에 장착되어 있는 다양한 응용 프로그램 통합을 지원하는 e-비즈니스 응용 프로그램 통합(eAI) 프레임워크를 제안한다. 연결된 응용 프로그램은 프레임워크를 구성하고 있는 워크플로우 시스템에 의해서 구동되고 조정되면서 특정 비즈니스 목적을 달성하게 된다. 프레임워크 구성을 위해서 5개의 하위 프레임워크 구성 모듈이 도출되었으며 도출된 각 모듈의 기능과 역할이 정의되었다. 도출된 5개의 하위 모듈은 비즈니스 프로세스 설계 툴, eAI 플랫폼, 비즈니스 프로세스 변환 모듈, UDDI 연결 모듈, 그리고 워크플로우 시스템을 포함한다. 제안된 프레임워크 환경에서 기업 내$\cdot$외부 응용 프로그램들은 방화벽에 구애되지 않고 손쉽게 통합될 수 있다. 본 논문에서는 제안된 시스템의 구현을 위한 워크플로우 시스템의 확장에 대해서 비교적 자세하게 기술하였으며, 구현된 eAI 프레임워크를 사용한 응용 프로그램 구현을 통하여 제안된 프레임워크의 유용성을 확인하였다. 완전한 기능을 갖춘 eAI 솔루션은 이 프레임워크에 추가적인 기능을 점진적으로 추가함으로써 구현 가능하다.

Damping of a taut cable with two attached high damping rubber dampers

  • Cu, Viet Hung;Han, Bing;Wang, Fang
    • Structural Engineering and Mechanics
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    • 제55권6호
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    • pp.1261-1278
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    • 2015
  • Due to their low intrinsic damping, stay cables in cable-stayed bridges have often exhibited unanticipated and excessive vibrations which result in increasing maintenance frequency and disruption to normal operations of the entire bridges. Mitigation of undesired cable vibration can be achieved by attaching an external damping device near the anchorage. High Damping Rubber (HDR) dampers have many advantages such as compact size, better aesthetics, easy maintenance, temperature stability, and cost benefits; therefore, they have been widely used to increase cable damping. Although a single damper has been shown to reduce cable vibrations, it is not the most effective method due to geometric constraints. This paper proposes the use of two HDR dampers to improve effectiveness and robustness in suppressing cable vibration. Oscillation parameters of the cable-dampers system were investigated in detail by modeling the stay cable as a taut string and each HDR damper as complex-valued impedance and by using an analytical formulation of the complex eigenvalue problem. The problem of two HDR dampers arbitrarily located along a cable is solved and the solution is discussed. Asymptotic formulas to calculate the damping ratios of the cable with two HDR dampers installed near the anchorage(s) are proposed and compared with the exact solutions. Further, a design example is presented in order to justify the methodology. The results of this study show that when the two HDR dampers are installed close to each other on the same end of the cable, some interaction between the dampers leads to reduced damping ratio. When the dampers are on the opposite ends of the cable, they are effective in increasing damping ratio and can provide better vibration reduction to multiple modes.

AR/VR 마이크로 디스플레이 환경을 고려한 JPEG-LS 플랫폼 개발 (A Development of JPEG-LS Platform for Mirco Display Environment in AR/VR Device.)

  • 박현문;장영종;김병수;황태호
    • 한국전자통신학회논문지
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    • 제14권2호
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    • pp.417-424
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    • 2019
  • AR/VR 디바이스에서 무손실 이미지 압축을 위한 JPEG-LS(: LosSless) 코덱에서 SBT 기반 프레임 압축기술로 메모리와 지연을 줄이는 설계를 제안하였다. 제안된 JPEG 무손실 코덱은 주로 콘텍스트 모형화 및 업데이트, 픽셀과 오류 예측 그리고 메모리 블록으로 구성된다. 모든 블록은 실시간 영상처리를 위해 파이프라인 구조를 가지며, LOCO-I 압축 알고리즘에 SBT 코딩기반의 개선된 2차원 접근방식을 사용한다. 제시한 STB-FLC기법을 통해 Block-RAM 사이즈를 기존 유사연구보다 1/3로 줄이고 예측(prediction) 블록의 병렬 설계는 처리속도에 향상을 가져올 수 있었다.

Physical modeling of dust polarization spectrum by RAT alignment and disruption

  • Lee, Hyeseung;Hoang, Thiem
    • 천문학회보
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    • 제46권2호
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    • pp.38.1-38.1
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    • 2021
  • Dust polarization depends on the physical and mechanical properties of dust, as well as the properties of local environments. To understand how dust polarization varies with grain mechanical properties and the local environment, in this paper, we model the wavelength-dependence polarization of starlight and polarized dust emission by aligned grains by simultaneously taking into account grain alignment and rotational disruption by radiative torques (RATs). We explore a wide range of the local radiation field and grain mechanical properties characterized by tensile strength. We find that the maximum polarization and the peak wavelength shift to shorter wavelengths as the radiation strength U increases due to the enhanced alignment of small grains. Grain rotational disruption by RATs tends to decrease the optical-near infrared polarization but increases the ultraviolet polarization of starlight due to the conversion of large grains into smaller ones. In particular, we find that the submillimeter (submm) polarization degree at 850㎛(P850) does not increase monotonically with the radiation strength or grain temperature (Td), but it depends on the tensile strength of grain materials. Our physical model of dust polarization can be tested with observations toward star-forming regions or molecular clouds irradiated by a nearby star, which have higher radiation intensity than the average interstellar radiation field. Finally, we compare our predictions of the P850-Td relationship with Planck data and find that the observed decrease of P850 with Td can be explained when grain disruption by RATs is accounted for, suggesting that interstellar grains unlikely to have a compact structure but perhaps a composite one. The variation of the submm polarization with U (or Td)can provide a valuable constraint on the internal structures of cosmic dust

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Modeling and experimental verification of phase-control active tuned mass dampers applied to MDOF structures

  • Yong-An Lai;Pei-Tzu Chang;Yan-Liang Kuo
    • Smart Structures and Systems
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    • 제32권5호
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    • pp.281-295
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    • 2023
  • The purpose of this study is to demonstrate and verify the application of phase-control absolute-acceleration-feedback active tuned mass dampers (PCA-ATMD) to multiple-degree-of-freedom (MDOF) building structures. In addition, servo speed control technique has been developed as a replacement for force control in order to mitigate the negative effects caused by friction and inertia. The essence of the proposed PCA-ATMD is to achieve a 90° phase lag for a structure by implementing the desired control force so that the PCA-ATMD can receive the maximum power flow with which to effectively mitigate the structural vibration. An MDOF building structure with a PCA-ATMD and a real-time filter forming a complete system is modeled using a state-space representation and is presented in detail. The feedback measurement for the phase control algorithm of the MDOF structure is compact, with only the absolute acceleration of one structural floor and ATMD's velocity relative to the structure required. A discrete-time direct output-feedback optimization method is introduced to the PCA-ATMD to ensure that the control system is optimized and stable. Numerical simulation and shaking table experiments are conducted on a three-story steel shear building structure to verify the performance of the PCA-ATMD. The results indicate that the absolute acceleration of the structure is well suppressed whether considering peak or root-mean-square responses. The experiment also demonstrates that the control of the PCA-ATMD can be decentralized, so that it is convenient to apply and maintain to real high-rise building structures.

Conception and Modeling of a Novel Small Cubic Antenna Design for WSN

  • Gahgouh Salem;Ragad Hedi;Gharsallah Ali
    • International Journal of Computer Science & Network Security
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    • 제24권2호
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    • pp.53-58
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    • 2024
  • This paper presents a novel miniaturized 3-D cubic antenna for use in wireless sensor network (WSN) application. The geometry of this antenna is designed as a cube including a meander dipole antenna. A truly omnidirectional pattern is produced by this antenna in both E-plane and H-plane, which allows for non-intermittent communication that is orientation independent. The operating frequency lies in the ISM band (centered in 2.45 GHz). The dimensions of this ultra-compact cubic antenna are 1.25*1.12*1cm3 which features a length dimension λ/11. The coefficient which presents the overall antenna structure is Ka=0.44. The cubic shape of the antenna is allowing for smart packaging, as sensor equipment may be easily integrated into the cube hallow interior. The major constraint of WSN is the energy consumption. The power consumption of radio communication unit is relatively high. So it is necessary to design an antenna which improves the energy efficiency. The parameters considered in this work are the resonant frequency, return loss, efficiency, bandwidth, radiation pattern, gain and the electromagnetic field of the proposed antenna. The specificity of this geometry is that its size is relatively small with an excellent gain and efficiency compared to previously structures (reported in the literature). All results of the simulations were performed by CST Microwave Studio simulation software and validated with HFSS. We used Advanced Design System (ADS) to validate the equivalent scheme of our conception. Input here the part of summary.