• 제목/요약/키워드: cell-based simulation model

검색결과 279건 처리시간 0.025초

Interference Aware Channel Assignment Algorithm for D2D Multicast Underlying Cellular Networks

  • Zhao, Liqun;Ren, Lingmei;Li, Li
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제16권8호
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    • pp.2648-2665
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    • 2022
  • Device-to-device (D2D) multicast has become a promising technology to provide specific services within a small geographical region with a high data rate, low delay and low energy consumption. However, D2D multicast communications are allowed to reuse the same channels with cellular uplinks and result in mutual interference in a cell. In this paper, an intelligent channel assignment algorithm is designed in D2D underlaid cellular networks with the target of maximizing network throughput. We first model the channel assignment problem to be a throughput maximizing problem which is NP-hard. To solve the problem in a feasible way, a novel channel assignment algorithm is proposed. The key idea is to find the appropriate cellular communications and D2D multicast groups to share a channel without causing critical interference, i.e., finding a channel for a D2D multicast group which generates the least interference to network based on current channel assignment status. In order to show the efficacy and effectiveness of our proposed algorithm, a novel search algorithm is proposed to find the near-optimal solution as the baseline for comparisons. Simulation results show that the proposed algorithm improves the network throughput.

Parametric study of the energy absorption capacity of 3D-printed continuous glass fiber reinforced polymer cruciform honeycomb structure

  • Hussain Gharehbaghia;Amin Farrokhabadi
    • Steel and Composite Structures
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    • 제49권4호
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    • pp.393-405
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    • 2023
  • In this paper, the energy absorption capability of a novel cruciform composite lattice structure was evaluated through the simulation of compression tests. For this purpose, several test samples of Polylactic acid cellular reinforced with continuous glass fibers were prepared for compression testing using the additive manufacturing method of material extrusion. Using a conventional path design for material extrusion, multiple debonding is probable to be occurred at the joint regions of adjacent cells. Therefore, an innovative printing path design was proposed for the cruciform lattice structure. Afterwards, quasistatic compression tests were performed to evaluate the energy absorption behaviour of this structure. A finite element model based on local material property degradation was then developed to verify the experimental test and extend the virtual test method. Accordingly, different combinations of unit cells' dimensions using the design of the experiment were numerically proposed to obtain the optimal configuration in terms of the total absorbed energy. Having brilliant energy absorption properties, the studied cruciform lattice with its optimized unit cell dimensions can be used as an energy absorber in crashworthiness applications. Finally, a cellular structure will be suitable with optimal behavior in crush load efficiency and high energy absorption.

다중 사용자 다중 입출력 시스템에서 고유값 기반 스케줄링을 위한 선택적 채널 정보 피드백 기법 (Opportunistic Channel State Information Feedback for Eigen based Scheduling in Multiuser MIMO Systems)

  • 김성태;홍대식
    • 대한전자공학회논문지TC
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    • 제46권7호
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    • pp.6-12
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    • 2009
  • 본 논문에서는 다중 사용자 환경 다중 안테나 시스템에서 고유값 기반 스케줄링을 수행하기 위한 채널 정보(CSI: channel state information)를 각 사용자의 채널 상태에 따라 선택적(opportunistic)으로 피드백하기 위한 기법을 제안하고 있다. 3GPP(3rd generation partnership project) SMC(spatial multiplexing channel) 채널 모델에 의하면 도심지역에서 다중 사용자 다중 입출력(MU-MIMO: multiuser multiple input multiple output) 시스템은 안테나간의 높은 상관도(correlation)에 의해 시스템 용량(capacity)이 크게 저하된다. 이를 해결하기 위해 제안된 고유값 기반 스케줄링 기법의 경우 상관도에 의한 시스템 용량 저하를 완화시킬 수 있지만, 다중 사용자 다이버시티 이득(multiuser diversity gain)을 충분히 얻지 못하는 단점이 있다. 본 논문에서는 고유값 기반 스케줄링 기법을 바탕으로 다중 사용자 다중 입출력 시스템에서 평균적인 피드백 용량의 증가가 크지 않으면서, 다중 사용자 다이버시티 이득을 크게 향상 시킬 수 있는 선택적 채널 정보 피드백 기법을 제안하고 있다. 컴퓨터 모의 실험 결과를 통해서 본 논문에서 제안한 선택적 피드백 기법을 통해 시스템 용량 개선 효과를 확인할 수 있다.

Computational Analysis of the 3-D structure of Human GPR87 Protein: Implications for Structure-Based Drug Design

  • Rani, Mukta;Nischal, Anuradha;Sahoo, Ganesh Chandra;Khattri, Sanjay
    • Asian Pacific Journal of Cancer Prevention
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    • 제14권12호
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    • pp.7473-7482
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    • 2013
  • The G-protein coupled receptor 87 (GPR87) is a recently discovered orphan GPCR which means that the search of their endogenous ligands has been a novel challenge. GPR87 has been shown to be overexpressed in squamous cell carcinomas (SCCs) or adenocarcinomas in lungs and bladder. The 3D structure of GPR87 was here modeled using two templates (2VT4 and 2ZIY) by a threading method. Functional assignment of GPR87 by SVM revealed that along with transporter activity, various novel functions were predicted. The 3D structure was further validated by comparison with structural features of the templates through Verify-3D, ProSA and ERRAT for determining correct stereochemical parameters. The resulting model was evaluated by Ramachandran plot and good 3D structure compatibility was evidenced by DOPE score. Molecular dynamics simulation and solvation of protein were studied through explicit spherical boundaries with a harmonic restraint membrane water system. A DRY-motif (Asp-Arg-Tyr sequence) was found at the end of transmembrane helix3, where GPCR binds and thus activation of signals is transduced. In a search for better inhibitors of GPR87, in silico modification of some substrate ligands was carried out to form polar interactions with Arg115 and Lys296. Thus, this study provides early insights into the structure of a major drug target for SCCs.

Optimum design and vibration control of a space structure with the hybrid semi-active control devices

  • Zhan, Meng;Wang, Sheliang;Yang, Tao;Liu, Yang;Yu, Binshan
    • Smart Structures and Systems
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    • 제19권4호
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    • pp.341-350
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    • 2017
  • Based on the super elastic properties of the shape memory alloy (SMA) and the inverse piezoelectric effect of piezoelectric (PZT) ceramics, a kind of hybrid semi-active control device was designed and made, its mechanical properties test was done under different frequency and different voltage. The local search ability of genetic algorithm is poor, which would fall into the defect of prematurity easily. A kind of adaptive immune memory cloning algorithm(AIMCA) was proposed based on the simulation of clone selection and immune memory process. It can adjust the mutation probability and clone scale adaptively through the way of introducing memory cell and antibody incentive degrees. And performance indicator based on the modal controllable degree was taken as antigen-antibody affinity function, the optimization analysis of damper layout in a space truss structure was done. The structural seismic response was analyzed by applying the neural network prediction model and T-S fuzzy logic. Results show that SMA and PZT friction composite damper has a good energy dissipation capacity and stable performance, the bigger voltage, the better energy dissipation ability. Compared with genetic algorithm, the adaptive immune memory clone algorithm overcomes the problem of prematurity effectively. Besides, it has stronger global searching ability, better population diversity and faster convergence speed, makes the damper has a better arrangement position in structural dampers optimization leading to the better damping effect.

도심 Micro 셀 시나리오에서 밀리미터파 시스템을 위한 딥러닝 기반 안테나 선택 기법 (Deep Learning-based Antenna Selection Scheme for Millimeter-wave Systems in Urban Micro Cell Scenario)

  • 주상임;김남일;김경석
    • 한국인터넷방송통신학회논문지
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    • 제20권5호
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    • pp.57-62
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    • 2020
  • 30GHz~300GHz 대역의 스펙트럼을 사용하는 밀리미터파는 높은 주파수로 인해 파장이 짧아서 기지국에 더 많은 안테나를 장착할 수 있어 Massive MIMO 시스템에 적합하다. 하지만 안테나 당 RF chain이 요구되기 때문에 안테나의 수가 증가되면 하드웨어 비용 및 전력 소비가 증가하는 문제점을 갖는다. 따라서 본 논문에서는 이러한 문제점을 해결하기 위해 안테나 선택 기법을 조사한다. 기존 철저한 조사 기반 안테나 선택 기법에서 높은 계산 복잡도를 가지는 문제를 해결하기 위해 딥러닝 기술을 적용하는 방안을 제안한다. 멀티 클래스를 분류할 수 있는 DNN 모델을 사용하여 최적의 안테나 조합을 예측한다. 시뮬레이션을 통해 기존 안테나 선택 기법들과 제안하는 딥러닝 기반 안테나 선택 기법을 비교하여 평가한다.

Numerical Simulation of Wave Breaking Near Ship Bow

  • Lee, Young-Gill;Kim, Nam-Chul;Yu, Jin-Won;Choi, Si-Young
    • Journal of Ship and Ocean Technology
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    • 제12권1호
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    • pp.16-27
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    • 2008
  • The interaction between advancing ships and the waves generated by them plays important roles in wave resistances and ship motions. Wave breaking phenomena near the ship bow at different speeds are investigated both numerically and experimentally. Numerical simulations of free surface profiles near the fore bodies of ships are performed and visualized to grasp the general trend or the mechanism of wave breaking phenomena from moderate waves rather than concentrating on local chaotic irregularities as ship speeds increase. Navier-Stokes equations are differentiated based on the finite difference method. The Marker and Cell (MAC) Method and Marker-Density Method are employed, and they are compared for the description of free surface conditions associated with the governing equations. Extra effort has been directed toward the realization of extremely complex free surface conditions at wave breaking. For this purpose, the air-water interface is treated with marker density, which is used for two layer flows of fluids with different properties. Adaptation schemes and refinement of the numerical grid system are also used at local complex flows to improve the accuracy of the solutions. In addition to numerical simulations, various model tests are performed in a ship model towing tank. The results are compared with numerical calculations for verification and for realizing better, more efficient research performance. It is expected that the present research results regarding wave breaking and the geometry of the fore body of ship will facilitate better hull form design productivity at the preliminary ship design stage, especially in the case of small and fast ship design. Also, the obtained knowledge on the impact due to the interaction of breaking waves and an advancing hull surface is expected to be applicable to investigation of the ship bow slamming problem as a specific application.

멀티미디어 무선 IP 망에서 핸드오프 호의 자원예측을 위한 LMS-위너 모델 (LMS-Wiener Model for Resources Prediction of Handoff Calls in Multimedia Wireless IP Networks)

  • 이진이;이광형
    • 한국통신학회논문지
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    • 제30권2A호
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    • pp.26-33
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    • 2005
  • 무선 IP 망의 자원 예약 방식에서는 미래의 호가 요구하는 무선자원의 양을 정확히 예측함으로써 제한된 무선자원의 이용률을 높일 수 있다. 본 연구에서는 멀티미디어 무선 IP 망에서 미래의 핸드오프 호가 요구하는 무선자원(대역폭)의 양을 예측하는 LMS-Wiener 예측방법을 제안하고, 자원의 예측 오차양의 크기에 관해서 기존외 위너 모델링에 기초한 예측방법과 성능을 비교한다. 성능비교를 위한 트래픽 환경은 피코셀 구조의 무선 IP 망에서 장시간 호의 도착패턴이 일반적인 포아송 분포보다는 비포아송 분포를 보이므로, 핸드오프 호의 도착과정을 비 포아송 분포, 핸드오프 호의 채널 점유 시간도 비 지수 분포로 모델링 하였다. 시뮬레이션 결과 기존의 위너모델에 의한 방법에서는 예측시점이 경과함에 따라 예측 오차량의 크기가 증가하는 반면에 제안한 방법에서는 예측 오차량의 크기가 감소하는 수렴성을 보였다. 따라서 제안한 자원의 예측 방법이 기존의 방법보다 미래의 핸드오프 호가 필요로 하는 무선자원의 양을 상대적으로 정확히 예측함으로써, 필요이상의 과도한 자원의 예약으로 발생되는 무선자원의 낭비를 줄일 수 있음을 알 수 있다.

Modeling of Arrhythmogenic Automaticity Induced by Stretch in Rat Atrial Myocytes

  • Youm, Jae-Boum;Leem, Chae-Hun;Zhang, Yin Hua;Kim, Na-Ri;Han, Jin;Earm, Yung-E.
    • The Korean Journal of Physiology and Pharmacology
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    • 제12권5호
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    • pp.267-274
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    • 2008
  • Since first discovered in chick skeletal muscles, stretch-activated channels (SACs) have been proposed as a probable mechano-transducer of the mechanical stimulus at the cellular level. Channel properties have been studied in both the single-channel and the whole-cell level. There is growing evidence to indicate that major stretch-induced changes in electrical activity are mediated by activation of these channels. We aimed to investigate the mechanism of stretch-induced automaticity by exploiting a recent mathematical model of rat atrial myocytes which had been established to reproduce cellular activities such as the action potential, $Ca^{2+}$ transients, and contractile force. The incorporation of SACs into the mathematical model, based on experimental results, successfully reproduced the repetitive firing of spontaneous action potentials by stretch. The induced automaticity was composed of two phases. The early phase was driven by increased background conductance of voltage-gated $Na^+$ channel, whereas the later phase was driven by the reverse-mode operation of $Na^+/Ca^{2+}$ exchange current secondary to the accumulation of $Na^+$ and $Ca^{2+}$ through SACs. These results of simulation successfully demonstrate how the SACs can induce automaticity in a single atrial myocyte which may act as a focus to initiate and maintain atrial fibrillation in concert with other arrhythmogenic changes in the heart.

몬테카를로 적분을 통한 3차원 점군의 건물 식별기법 연구 (A Study on Building Identification from the Three-dimensional Point Cloud by using Monte Carlo Integration Method)

  • 이채연;안승만
    • 한국지리정보학회지
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    • 제23권4호
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    • pp.16-41
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    • 2020
  • 실제 공간의 분포 또는 양적 속성을 대변하는 지리정보 입력은 지구시스템 모의 내에서 주요 관심사가 되고 있다. 많은 연구에서 다양한 격자 해상도에서의 지표면 특성에 대한 부정확한 추정이 모델링 결과를 크게 바꾸는 것으로 나타났다. 따라서, 이 논문은 도시지역 건물들의 분포와 면적·체적 속성을 반영하기 위해서, 항공라이다로 수집된 3DPC(three-dimensional point cloud) 샘플링 체계에 Monte Carlo Integration(MCI) 기법 기반 공간확률(spatial probability)을 적용을 제안하였다. 건물 식별과 관련해 공간확률(SP) 임계치, 격자 크기, 3차원점군 밀도 세 인자의 결정규칙 적용 결과가 비교되었다. 연구 결과, 건물의 격자가 커짐에 따라 식별되는 건물의 면적 속성이 증가하였다. 공간 모델링 및 분석의 신뢰성을 높이기 위해서는 샘플링 체계에서의 결정규칙을 사용하여 건물의 면적 속성을 조정하는 것이 권장된다. 제안된 방법은 모델링 분야가 요구하는 크고 작은 격자의 변화에서도 일정하게 건물 면적 속성이 유지되도록 지원할 것이다.