• Title/Summary/Keyword: Modeling performance

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Digital Manufacturing based Modeling and Simulation of Production Process in Subassembly Lines at a Shipyard (디지털 생산을 기반으로 한 조선 소조립 공정 모델링 및 시뮬레이션)

  • 이광국;신종계;우종훈;최양렬;이장현;김세환
    • Proceedings of the Korea Society for Simulation Conference
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    • 2003.11a
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    • pp.185-192
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    • 2003
  • Digital Manufacturing-based production could be very effective in shipbuilding in order to save costs and time, to increase safety for workers, and to prevent bottleneck processes in advance. Digital shipbuilding system, a simulation-based production tool, is being developed to achieve such aspects in Korea. To simulate material flow in a subassembly line at a shipyard, the product, process and resources was modeled for the subassembly process which consisted of several sub-processes such as tack welding, piece alignment, tack welding, and robot welding processes. The analysis and modeling were carried out by using the UML(Unified Modeling Language), an object-oriented modeling method as well as IDEF(Integration DEFinition), a functional modeling tool. Initially, the characteristics of the shop resources were analyzed using the shipyard data, and the layout of the subassembly line was designed with the resources. The production process modeling of the subassembly lines was performed using the discrete event simulation method. Using the constructed resource and process model, the productivity and efficiency of the line were investigated. The number of workers and the variations In the resource performance such as that of a new welding robot were examined to simulate the changes in productivity. The bottleneck process floated according to the performance of the new resources. The proposed model was viewed three-dimensionally in a digital environment so that interferences among objects and space allocations for the resources could be easily investigated

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How Practitioners Perceive a Ternary Relationship in ER Conceptual Modeling

  • Jihae Suh;Jinsoo Park;Buomsoo Kim;Hamirahanim Abdul Rahman
    • Asia pacific journal of information systems
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    • v.28 no.2
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    • pp.75-92
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    • 2018
  • Conceptual modeling is well suited as a subject that constitutes the "core" of the Information Systems (IS) discipline and has grown in response to IS development. Several modeling grammars and methods have been studied extensively in the IS discipline. Previous studies, however, present deficiencies in research methods and even put forward contradictory results about the ternary relationship in conceptual modeling. For instance, some studies contend that the semantics of a binary relationship are better for novices, but others argue that a ternary relationship is better than three binary relationships when the association among three entity types clearly exists. The objective of this research is to acquire complete and accurate understanding of the ternary relationship, specifically to understand practitioners' modeling performance when utilizing either a ternary or binary relationship. To the best of our knowledge, no previous work clearly compares real-world modeler performance differences between binary and ternary representations. By investigating practitioners' understanding of ternary relationship and identifying practitioners' cognition, this research can broaden the perspective on conceptual modeling.

Uncertainty Modeling and Robust Control for LCL Resonant Inductive Power Transfer System

  • Dai, Xin;Zou, Yang;Sun, Yue
    • Journal of Power Electronics
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    • v.13 no.5
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    • pp.814-828
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    • 2013
  • The LCL resonant inductive power transfer (IPT) system is increasingly used because of its harmonic filtering capabilities, high efficiency at light load, and unity power factor feature. However, the modeling and controller design of this system become extremely difficult because of parameter uncertainty, high-order property, and switching nonlinear property. This paper proposes a frequency and load uncertainty modeling method for the LCL resonant IPT system. By using the linear fractional transformation method, we detach the uncertain part from the system model. A robust control structure with weighting functions is introduced, and a control method using structured singular values is used to enhance the system performance of perturbation rejection and reference tracking. Analysis of the controller performance is provided. The simulation and experimental results verify the robust control method and analysis results. The control method not only guarantees system stability but also improves performance under perturbation.

Development of the Object-oriented Powertrains Dynamic Simulation Program (객체지향 동력전달계 동적 시물레이션 프로그램 개발 연구)

  • Han, Hyung-Suk;Lee, Jai-Kyung;Kim, Hyun-Soo;Lim, Won-Sik
    • Proceedings of the KSME Conference
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    • 2003.04a
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    • pp.693-698
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    • 2003
  • The application of object-oriented modeling to develop a powertrain performance simulation program, called P-DYN, is introduced. Powertrain components, such as the engine, transmission, shaft, clutch are modeled as classes which have data and method by using object-oriented modeling methodology. P-DYN, a performance simulation program, based on the object-oriented modeling is made in C++. One powertrain example is simulated through the P-DYN. It is expected that the simulation program or individual class constructed in this paper would be useful for automotive engineers in predicting the performance of powertrains and developing a simulation program.

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Seismic Assessment and Performance of Nonstructural Components Affected by Structural Modeling

  • Hur, Jieun;Althoff, Eric;Sezen, Halil;Denning, Richard;Aldemir, Tunc
    • Nuclear Engineering and Technology
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    • v.49 no.2
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    • pp.387-394
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    • 2017
  • Seismic probabilistic risk assessment (SPRA) requires a large number of simulations to evaluate the seismic vulnerability of structural and nonstructural components in nuclear power plants. The effect of structural modeling and analysis assumptions on dynamic analysis of 3D and simplified 2D stick models of auxiliary buildings and the attached nonstructural components is investigated. Dynamic characteristics and seismic performance of building models are also evaluated, as well as the computational accuracy of the models. The presented results provide a better understanding of the dynamic behavior and seismic performance of auxiliary buildings. The results also help to quantify the impact of uncertainties associated with modeling and analysis of simplified numerical models of structural and nonstructural components subjected to seismic shaking on the predicted seismic failure probabilities of these systems.

A modeling and performance comparison of photovoltaic module (태양광모듈의 모델링 및 성능해석 결과비교)

  • So, Jung-Hun;Yu, Byung-Gyu;Hwang, Hye-Mi;Yu, Gwon-Jong;Choi, Ju-Yeop
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.1128-1129
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    • 2008
  • The detailed modeling method of photovoltaic (PV) module are useful to perform detailed analysis of PV array performance for changing meteorological conditions, verify actual rated power of PV system sizing and, determine the optimal design of PV system and components. This paper investigates a modeling approach of PV module performance in terms of irradiance and temperature changes and compared measured with simulated value of PV modules.

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A Performance Modeling of Wireless Sensor Networks as a Queueing Network with On and Off Servers

  • Ali, Mustafa K. Mehmet;Gu, Hao
    • Journal of Communications and Networks
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    • v.11 no.4
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    • pp.406-415
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    • 2009
  • In this work, we consider performance modeling of a wireless sensor network with a time division multiple access (TDMA) media access protocol with slot reuse. It is assumed that all the nodes are peers of each other and they have two modes of operation, active and sleep modes. We model the sensor network as a Jackson network with unreliable nodes with on and off states. Active and sleep modes of sensor nodes are modeled with on and off states of unreliable nodes. We determine the joint distribution of the sensor node queue lengths in the network. From this result, we derive the probability distribution of the number of active nodes and blocking probability of node activation. Then, we present the mean packet delay, average sleep period of a node and the network throughput. We present numerical results as well as simulation results to verify the analysis. Finally, we discuss how the derived results may be used in the design of sensor networks.

A Modeling Technique for Performance Evaluation of Asynchronous TMR Controller (비동기 3중화 제어기의 성능분석을 위한 모델링 기법)

  • Kim, Seog-Joo;Kwon, Soon-Man;Kim, Jong-Moon;Kim, Kook-Hun
    • Proceedings of the KIEE Conference
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    • 2000.07d
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    • pp.2684-2686
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    • 2000
  • This paper describes a preliminary study on a modeling technique for control performance evaluation of asynchronous TMR(Triple Modular Redundancy) controller. Hybrid system modeling is applied to TMR controller performance evaluation and mixed logical dynamical system description is used to model the behavior of majority voter in the controller. Windup and bumpless transfer problems in redundancy controls are also mentioned.

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Performance Analysis Modeling for Design of Rotary Kiln Reactors (로터리킬른 반응기 설계를 위한 성능해석 모형)

  • Eeom, Minjae;Hahn, Taekjin;Lee, Hookyung;Choi, Sangmin
    • Journal of the Korean Society of Combustion
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    • v.18 no.3
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    • pp.9-23
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    • 2013
  • A rotary kiln furnace is one of the most widely used gas-solid reactors in the industrial field. Although the rotary kiln is a versatile system and has different size, approach to the reactor modeling can be generalized in terms of flow motion of the solid and gas phases, heat transfer, and chemical reactions on purpose. In this paper, starting from a zero-dimensional model and extending to higher dimension and comprehensive models, overall procedure of the design development of rotary kiln reactors and considerations are presented. The approaches to performance analysis of the reactors are introduced and examples of application cases are presented.

Establishment of System Level environment to apply SSD to PC (SSD의 PC적용을 위한 시스템 수준의 환경 구축)

  • Kim, Dong;Bang, Kwan-Hu;Chung, Eui-Young
    • Proceedings of the IEEK Conference
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    • 2008.06a
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    • pp.561-562
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    • 2008
  • In this paper, we propose a establishment of system level environment to exploit PC system with SSD (Solid State Disk) by using TLM (Transaction Level Modeling) method with SystemC language. The reason why we choose this modeling method is that it eases RTL (Register Transfer Level) modeling burdens and we can accurately estimate the performance about different architectural changes. Also, it provides simulation speed which is relatively faster than RTL modeling method. The baseline architectural platform we implemented showed that SSD's internal transfer time is a dominant factor, so we need to improve that part and it is expected to be a good simulator to measure the system's overall performance by exploiting SSD's internal architectures.

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