• Title/Summary/Keyword: Uniform requirements

검색결과 171건 처리시간 0.019초

이동통신에서 채널 할당 문제를 위한 Hopfield 신경회로망 모델 (A Hopfield Neural Network Model for a Channel Assignment Problem in Mobile Communication)

  • 김경식;김준철;이준환
    • 한국통신학회논문지
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    • 제18권3호
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    • pp.339-347
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    • 1993
  • 이동통신에 있어서 채널 할당 문제는 조합적 최적화 문제로 문제의 범위가 증가함에 따라 계산량이 지수함수적으로 증가하는 NP-완성형 문제이다. 본 논문에서는 Hopfield 모델을 이용하여 동일 채널 간섭, 인접 기지국 간섭, 동일 기지국 간섭등의 제약조건을 만족하여 각 기지국의 채널 요구량에 따라 채널을 할당하는 방법을 고려하였다. 본 논문에서 고려한 Hopfield 모델은 현재의 하드웨어 구현기술의 제약 요건등을 고려하여 가장 기본적인 모델을 가정하였으며, 고정 채널할당 방법에서 균일, 불균일 트래픽 요구량을 고려하였고, 동적 채널 할당 방법의 적용 가능성을 타진해 보았다.

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Dielectric $Al_2O_3-SiO_2$ Films from Metal Alkoxides

  • Soh, Deawha;Natalya, Korobova E.
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 2003년도 추계종합학술대회
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    • pp.957-962
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    • 2003
  • The preparation of $Al_2$O$_3$-SiO$_2$ thin films from less than one micron to several tens of microns in thickness had been prepared from metal alkoxide sols. Two methods, dip-withdrawal and electrophoretic deposition, were employed for thin films and sheets formation. The requirements to be satisfied by the solution for preparing uniform and strong films and by the factors affecting thickness and other properties of the films were examined. for the preparation of thin, continuous $Al_2$O$_3$-SiO$_2$ films, therefore, metal-organic-derived precursor solutions contained Si and Al in a chemically polymerized form has been developed and produced in a clear liquid state. In the process of applying to substrates, this liquid left a transparent, continuous film that could be converted to crystalline $Al_2$O$_3$-SiO$_2$ upon heating to 100$0^{\circ}C$. And, a significant change of the film density took place in the crystallization process, thus leading to the strict requirements as to the film thickness, which could survive crystallization.

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이송 모듈을 사용한 리플로우 오븐의 열유동해석 (Thermal design of reflow oven with PCB-module)

  • 정원중;권현구;조형희
    • 반도체디스플레이기술학회지
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    • 제5권3호
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    • pp.29-32
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    • 2006
  • Because of new requirements related to the employment of SMT(Surface Mounting Technology) manufacturing and the diversity of components on high density PCB(Printed Circuit Boards), Thermal control of the reflow process is required in order to achieve acceptable yields and reliability of SMT assemblies. Accurate control of the temperature distribution during the reflow process is one of the major requirements, especially in lead-free assembly. This study has been performed for reflow process using the commercial CFD(Computational Fluid Dynamics) tool for predicting flow and temperature distributions. Porous plate was installed to prevent leakage flow which was one of the major problem of temperature uniformity in the reflow process. There is a separation region where the flow is turned. Outside wall made of porous plate is to prevent and minimize separation region for acquiring uniform temperature during operation. This paper provided design concept from CFD results of the steady state temperature distribution and flow field inside a reflow oven.

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육군 착용형 로봇을 장착하기 위한 기능성 의복 설계 요소 조사 (Survey on the Functional Clothing Design Factors for the Military Wearable Robot)

  • 엄란이;이예진
    • 한국의류학회지
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    • 제45권6호
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    • pp.1004-1016
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    • 2021
  • This study aims to derive the design requirements for functional clothing worn with military wearable robots using a survey of people with military experience. Specifically, 982 adult males with military and muscular exercise experience were surveyed for their demands for the clothing worn with wearable robots during military activities. The study showed that it is necessary to develop functional clothing worn inside robots suitable for frequent movements of soldiers to improve their comfort level of wearable robots. The surveyed soldiers indicated that they preferred the top and bottom clothing with high-pressure levels because the upper body felt fatigued during transportation, while both the upper and lower body got exhausted during marches. The survey of design requirements revealed that the participants preferred a top with long sleeves and a bottom with ankle-length leggings in color similar to current military uniforms. We conclude that it is important to design functional clothing worn inside wearable robots in different forms depending on frequent movements, e.g., with differentiated pressures and material placements.

The Digital Transformation of Accounting Industry for Small and Medium Enterprises in Vietnam: Challenges and Solutions

  • Thi Huyen Tran;Hoang Tuan Nguyen;Quoc Cuong Nguyen
    • International Journal of Advanced Culture Technology
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    • 제11권2호
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    • pp.221-228
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    • 2023
  • The industrial revolution 4.0 in general and the trend of the digital economy in particular have affected all aspects of the economy. In the orther hand, Digital Technology has the power to impact the strategies and competitiveness of businesses in the market. It is ever evolving and creating a revolutionary stand for different professions as well. Accounting is considered to be one of the oldest and traditional professions. The rules and methodology of this profession has remained uniform for a long period of time. But due to the advent of the digital technology accounting industry is experiencing some great changes. Challenges for the accounting profession are reflected in the need for rapid adaptation and transformation of business practice and business processes. Gradually it was difficult to manage the accounting of large firms without having any machine help. This profession faced a lot of challenges and required the need to adapt technology. The requirements of finance and digital accounting, as well as the requirements of regional and international financial and accounting integration, require proactive preparation, taking full advantage of the advantages as well as limiting the impacts. disadvantage. The aim of this paper is to analyze and systematize the key challenges that digitalization brings for accounting industry and propose some solution for digital transformation of accounting industry for Small and Medium Enterprise in Vietnam

여고생 동복의 보온기능성 개선을 위한 실태조사 (Actual Condition Survey for Thermal Functionality Improvement of Female Student's Winter Uniforms)

  • 김유미;이정란
    • 한국의류산업학회지
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    • 제16권6호
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    • pp.954-960
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    • 2014
  • This study surveyed high school girls in the Busan, Ulsan, and Gyeongnam areas to study how they wear school uniforms along with their satisfaction levels and demands in regards to functional school uniforms. This study presents data on the requirements for the development of winter school uniforms for high school girls with improved warmth functions. The findings are: First, high school girls purchased school uniforms of different brands and the purchase rates for three brands were 25% to 30% approximately. Most of them spent more than 300,000 KRW and less than 400,000 KRW on school uniforms purchases. Second, the greatest complaints by students about winter school uniforms were the ability to conduct routine activities and poor thermal insulation. The most popular bottom underwear for girls was underpants and leggings. The most popular top underwear was half-sleeved round neck t-shirts and running shirts. Third, a survey about uniform functionality showed that most students used and 'arm pit sweat absorbing pad', 'Waist size adjusting function, and 'inside pockets with zippers'. Satisfaction with functional uniforms was low: less than 3.5 in all questions. Fourth, students were favorable to develop functional uniforms to keep warm in the winter. The bottom needs to be warmer than the top and it is necessary to keep legs warm, especially the thighs and calves.

Fatigue Life Evaluation of Butt-Welded Tubular Joints

  • Kim, Dong-Su;Nho, In-Sik
    • 한국해양공학회지
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    • 제17권2호
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    • pp.34-39
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    • 2003
  • Recent deepwater offshore structures in the Gulf of Mexico utilize butt welded tubular joints. Application of a welded tubular joint includes tendons, production risers, and steel catenary risers. Fatigue life assessment of these joints becomes more critical, as the structures to which they are attached are allowed to undergo cyclic and sometimes large displacements around an anchored position. Estimation of the fatigue behavior of these tubular members in the design stage is generally condrcted by using S-N curves, as specified in the codeds and standards. Applying the stress concentration factor of the welded structure to the S-N approach often results in a very conservative assessment, because the stress field acting on the tubular has a non-uniform distribution through the thickness. Fatigue life analysis using fracture mechanics has been applied in the design of the catenary risers. This technology enables the engineer to establish proper requirements on weld quality and inspection acceptance criteria to assure satisfactory structural integrity during its design life. It also provides guidance on proper design curves and a methodology for accounting for the effects of non-uniform stress distribution through the wall thickness. Still, there is inconsistency when designing tubular joints using a conventional S-N approach and when specifying weld flaw acceptance criteria using fracture mechanics approach. This study developed fatigue curves that are consistent with both the S-N approach and the fracture mechanics approach. Accounting for non-uniform stress distribution and threshold stress intensity factor were key parameters in relating both approaches. A series of S-N curves, generated from the fracture mechanics approach, were compared to the existing S-N curves. For flat plate butt joint, the S-N curve generated from fracture mechanics matches with the IIW class 100 curve when initial crack depth was 0.5 mm (0.02 ). The new curves for tubular joint agree very well with the experimental results. The comparison also indicated the degree of conservatism built into the API X design curve.

Fatigue Life Evaluation of Butt-Welded Tubular Joints

  • Kim, Dong-Sup;Nho, In-Sik
    • International Journal of Ocean Engineering and Technology Speciallssue:Selected Papers
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    • 제6권1호
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    • pp.69-74
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    • 2003
  • Recent deepwater offshore structures in the Gulf of Mexico utilize butt welded tubular joints. Application of a welded tubular joint includes tendons, production risers, and steel catenary risers. Fatigue life assessment of these joints becomes more critical, as the structures to which they are attached are allowed to undergo cyclic and sometimes large displacements around an anchored position. Estimation of the fatigue behavior of these tubular members in the design stage is generally conducted by using S-N curves, as specified in the codes and standards. Applying the stress concentration factor of the welded structure to the S-N approach often results in a very conservative assessment, because the stress field acting on the tubular has a non-uniform distribution through the thickness. Fatigue life analysis using fracture mechanics has been applied in the design of the catenary risers. This technology enables the engineer to establish proper requirements on weld quality and inspection acceptance criteria to assure satisfactory structural integrity during its design life. It also provides guidance on proper design curves and a methodology for accounting for the effects of non-uniform stress distribution through the wall thickness. Still, there is inconsistency when designing tubular joints using a conventional S-N approach and when specifying weld flaw acceptance criteria using fracture mechanics approach. This study developed fatigue curves that are consistent with both the S-N approach and the fracture mechanics approach. Accounting for non-uniform stress distribution and threshold stress intensity factor were key parameters in relating both approaches. A series of S-N curves, generated from the fracture mechanics approach, were compared to the existing S-N curves. For flat plate butt joint, the S-N curve generated from fracture mechanics matches with the IIW class 100 curve when initial crack depth was 0.5 mm (0.02). The new curves for tubular joint agree very well with the experimental results. The comparison also indicated the degree of conservatism built into the API X design curve.

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Seismic performance of concrete moment resisting frame buildings in Canada

  • Kafrawy, Omar El;Bagchi, Ashutosh;Humar, Jag
    • Structural Engineering and Mechanics
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    • 제37권2호
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    • pp.233-251
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    • 2011
  • The seismic provisions of the current edition (2005) of the National Building Code of Canada (NBCC) differ significantly from the earlier edition. The current seismic provisions are based on the uniform hazard spectra corresponding to 2% probability of exceedance in 50 years, as opposed to the seismic hazard level with 10% probablity of exeedance in 50 years used in the earlier edition. Moreover, the current code is presented in an objective-based format where the design is performed based on an acceptable solution. In the light of these changes, an assessment of the expected performance of the buildings designed according to the requirements of the current edition of NBCC would be very useful. In this paper, the seismic performance of a set of six, twelve, and eighteen story buildings of regular geometry and with concrete moment resisting frames, designed for Vancouver western Canada, has been evaluated. Although the effects of non-structural elements are not considered in the design, the non-structural elements connected to the lateral load resisting systems affect the seismic performance of a building. To simulate the non-structural elements, infill panels are included in some frame models. Spectrum compatible artificial ground motion records and scaled actual accelerograms have been used for evaluating the dynamic response. The performance has been evaluated for each building under various levels of seismic hazard with different probabilities of exceedance. From the study it has been observed that, although all the buildings achieved the life-safety performance as assumed in the design provisions of the building code, their performance characteristics are found to be non-uniform.

Fabrication and Characterization of a GaN Light-emitting Diode (LED) with a Centered Island Cathode

  • Park, Yun Soo;Lee, Hwan Gi;Yang, Chung-Mo;Kim, Dong-Seok;Bae, Jin-Hyuk;Cho, Seongjae;Lee, Jung-Hee;Kang, In Man
    • Journal of the Optical Society of Korea
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    • 제16권4호
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    • pp.349-353
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    • 2012
  • Uniform spreading of injection current in light-emitting diodes (LEDs) is one of the crucial requirements for better device performances. It is reported that non-uniform current spreading leads to low output power, high current crowding, heating, and reliability degradation of the LED device. This paper reports on the effects of different surface and electrode geometries in the LEDs. To increase the output power of LEDs and reduce the series resistance, a rectangular-type LED (RT-LED) with a centered island cathode has been fabricated and investigated by comparison with a conventional LED (CV-LED). The performances of RT-LEDs were prominently enhanced via uniform current spreading and low current crowding. Performances in terms of increased output power and lower forward voltage of simulated RT-LEDs are much superior to those of CV-LEDs. Based on these results, we investigated the correlation between device geometries and optical characteristics through the fabricated CV and RT-LEDs. The measured output power and forward voltage of the RT-LEDs at 100 mA are 64.7% higher and 8% smaller compared with those of the CV-LEDs.