• Title/Summary/Keyword: prototypes

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RAM and Performance Analysis for System Effectiveness Inestigations (시스템 효율성 추정을 위한 RAM과 성능 분석)

  • 이강원
    • Proceedings of the Korean Institute of Communication Sciences Conference
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    • 1985.10a
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    • pp.3.2-6
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    • 1985
  • There are two major fields for system effectiveness investogations-RAM analysis and performance(capacity) analysis. The investgation methods for system effectiveness are discussed. And two prototypes are presented for RAM analysis and performance analysis.

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Fuzzy Inference in Medical Diagnosis

  • Kim, Soon-Ki
    • Proceedings of the Korean Institute of Intelligent Systems Conference
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    • 1995.10b
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    • pp.92-97
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    • 1995
  • In medical diagnostic process we are dealing with the preliminary diagnosis based on the interview chart. We will quantify the qualitative information of a patient by dual scaling and establish both prototypes of fuzzy diagnostic sets and the fuzzy linear regressions. Its utility is shown in the diagnosis of headache and CAFDDH.

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FUZZY CONTROL AS INTERPOLATION

  • Kovalerchuk, B.;Yusupov, H.
    • Proceedings of the Korean Institute of Intelligent Systems Conference
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    • 1993.06a
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    • pp.1151-1154
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    • 1993
  • The purpose of the paper is to explain some heuristic, common sense suppositions of fuzzy control. It is shown that Fuzzy Control is a kind of quasilinear interpolation of prototypes. Control function can be sufficiently exact represented as piecewise-linear function. The best interpolation is connected with normalized intersected fuzzy sets.

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High Pressure Liquid Jet Technology for Nano Particles Production

  • Mazurkiewicz, Marian;Rhee, Chang-Kyu;Weglinski, Bogumil
    • Journal of Powder Materials
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    • v.15 no.5
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    • pp.411-421
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    • 2008
  • Principles and historical background of high pressure liquid jet (HPLJ) technology is presented in the paper. This technology can be applied, among others, for production of nano particles. This target can be achieved in various type of disintegration systems developed and designed on the base of this technology. The paper describes principles of two examples of such systems: HPLJ-reactor, called also a linear comminuting system, HPLJ- centrifugal comminuting system, which prototypes have been manufactured. A linear mill, being high energy liquid jet reactor, has been developed and tested for micronization of various types of materials. The results achieved so far, and presented in the paper, show its potential for further improvement toward nano-size particle production. Flexibility of adjustment of the reactors and the mechanism of the process allows for the creation of particles with unprecedented rheology. The reactor can be especially suitable to micronize, mix and densify materials with a wide range of mechanical properties for various industrial needs. Presented prototypes of comminution systems generate interesting potentials toward production of nano particles. Their performance, based on up today research, confirms expected high efficiency of materials disintegration, which opens a new challenge for industrial applications. The paper points out benefits and area of possible applications of presented technology.

Simulation on Silhouette Variations According to Vacant Space Quantity between Body and Clothing -Focused on Men's Upper Body- (인체와 의복과의 공간적 감각에 따른 실루엣 변화에 관한 연구 - 남성복 상의원형을 대상으로 -)

  • Choi, Mee-Sung
    • Fashion & Textile Research Journal
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    • v.7 no.2
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    • pp.225-230
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    • 2005
  • This research was undertaken to compare basic bodice prototypes for Internet shopping customer, and to select a profitable fit vacant space quantity between clothing and body. A total one hundred of eighteen outfits (4 types of pattern ${\times}$ 9 subjects ${\times}$5 body areas) were constructed with basic bodice drafting method of Japan Bunka Women's University according to nine male body types. Fifty-two experts analysis of the different prototypes as five body area and evaluate the most appropriate ease amount and stabilization of the simulation images on the computer. The experiments with automated methods using simulation image are based on AZ program of TORAY, Japan. Data was analyzed using percentiles, frequency and $X^2$. Taken together, the present result of vacant space quantity and stability evaluation through images shows that there is a significant difference in the size variation of the chest circumference, shoulder slope and waist circumference. In case of ease amount, chest area, shoulder slope, waist area and armhole except neckline area were shown more appropriate on the basic bodice pattern without size change. In case of stabilization, the chest area, shoulder slope and armhole except waist area and neckline area was shown the best on the basic bodice pattern without size change. However the waist area was shown on the basic bodice pattern plus 2 cm, neckline was shown more appropriate on the basic bodice pattern plus 1cm.

The Impact of Integrating Engineering into Science Learning on Student's Conceptual Understandings of the Concept of Heat Transfer

  • Park, Mi-Sun;Nam, Youn-Kyeong;Moore, Tamara;Roehrig, Gillian
    • Journal of the Korean Society of Earth Science Education
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    • v.4 no.2
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    • pp.89-101
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    • 2011
  • Science, Mathematics, Engineering, and Technology (STEM) integrated education has been spotlighted as a new approach for promoting students' conceptual understanding and supporting their future career in STEM field. There is increasing evidence of the positive impact of using a whole design process that can be an example of STEM integrated activities to improve students' conceptual understanding and problem solving skills. However, there is a lack of information on how teachers should accomplish science and engineering integration activities in their classroom and what process they should pay attention. To answer this question, we research the relationship between an design process and students' conceptual understanding using an engineering design activity, called 'Save the Penguins', and study on how each step in an engineering design process in this activity enhance students' conceptual knowledge in science. We found that testing their prototypes and discussing with their peers were the most important process for students to understand and apply science concept for their design, even though the whole engineering design process (demonstration about radiation, discussion about examples in our lives, and testing and reviewing their prototypes, and making final design) helps the students understand the scientific concepts.

A Testing Technique based on Virtual Prototype for Embedded Software (가상 프로토타입 기반 임베디드 소프트웨어의 테스트 기법)

  • Ryu, Hodong;Jeong, Sooyong;Lee, Sunghee;Kim, Jihun;Park, Heungjun;Lee, Seungmin;Lee, Woo Jin
    • IEMEK Journal of Embedded Systems and Applications
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    • v.9 no.6
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    • pp.307-314
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    • 2014
  • Recently, software reliability and safety issues are seriously considered since failures of embedded systems may cause the damages of human lifes. For verifying and testing embedded software, execution environment including sensors and actuators should be prepared in the actual plants or virtual forms on PC. In this paper, we provide the virtual prototype based code simulation techniques and testing framework on PC. Virtual prototypes are generated by combining the Adobe's Flash SWF images corresponding to the state machine of HW or environment components. Code simulation on PC is possible by replacing the device drivers into virtual drivers which connect to virtual prototypes. Also, testing is performed by controlling the states of virtual prototype and simulators. By using these tools, embedded software can be executed in the earlier development phase and the efficiency and SW quality can be enhanced.

Investigation Into the Manufacture of 3D Functional Parts using VLM-ST and Its Applied Technology (발포폴리스티렌 폼을 이용한 단속형 가변적층 쾌속조형공정과 응용기술을 이용한 3차원 기능성 제품 제작에 관한 연구)

  • Ahn D. C.;Lee S. H.;Choi H. S.;Kim K. D.;Yang D. Y.
    • Proceedings of the Korean Society for Technology of Plasticity Conference
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    • 2001.10a
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    • pp.190-194
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    • 2001
  • The integration of rapid prototyping and tooling has the potential for the rapid net shape manufacturing of three-dimensional parts with geometrical complexity. In this study, a new rapid prototyping process, transfer type of Variable Lamination Manufacturing (VLM-ST), was proposed to manufacture net shape of 3-D prototypes. In order to examine the efficiency and applicability of the proposed process, various 3-D parts, such as a world-cup logo, and extruded cross and a knob shape, were fabricated on the apparatus. In addition, the new rapid tooling process, which is a triple reverse process, was proposed to manufacture of 3-D functional part using VLM-ST prototypes and the plastic part of the knob shape was produced by the new rapid tooling process.

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Minimization of Post-processing area for Stereolithography Parts by Selection of Part Orientation (부품방향의 선정을 통한 광조형물의 후가공면적 최소화)

  • Kim, Ho-Chan;Lee, Seok-Hee
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.26 no.11
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    • pp.2409-2414
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    • 2002
  • The surfaces of prototypes become rough due to the stair-stepping which is the inevitable phenomenon in the Rapid Prototypes are not used only for the verification of feature. The grinding, coating, or the composition of them is a main operation in post-processing in which lots of costs and long build time are needed. The solution is proposed to increase the efficiency of rapid prototyping by minimizing or removing the composition of them is a main operation in post-processing in which lots of costs and long build time are needed. the solution is proposed to increase the efficiency of rapid prototyping by minimizing or removing the regions for post-processing. the factors to cause the surface roughness and their effects are analyzed through the experiments. Software modules are developed to predict the surface roughness of each face in the prototyping with the result. An experimental compensation method is developed to apply the modules to various RP equipments, materials and build styles. The build direction is searched with use of genetic algorithm to maximize the total areas of the surface of which roughness is better than the user-defined value.