• Title/Summary/Keyword: Design power

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A Study on Power Dressing in Socio-culture (파워드레싱(Power Dressing)에 대한 사회문화적 연구)

  • Chung, Mee-Hye
    • Journal of the Korea Fashion and Costume Design Association
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    • v.15 no.1
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    • pp.31-45
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    • 2013
  • Fashion appears as a similar sense of form in a regularly cyclical way. The part highlighted in the female body also becomes that way. The social and cultural problem of fashion is also a matter about the selection of a wearer on how to wear in what environment. Power dressing means an attire that makes you feel dignity, intelligence or power and an attire that is needed to succeed in the business society. It is based on the fact that women started wearing tailored suits that were regarded as the exclusive item of men as the women's social activity was actively progressing. The purpose of the study is to analyze the problem of styles in the social and cultural perspectives. The power dressing was repeatedly appeared in 1930s, 1980s and 2000s. Therefore, this study collected photo data and literature documents to analyze and compare shoulders represented during these three periods, and to examine what social cultural environment was operated for each period and how the designers of each period expressed with clothes. Power dressing is characterized by the use of shoulder pad for the first time for 1930s, the extended shoulder for 1980s and the design the extended shoulder with the more decorative method for 2000s. Power dressing has been utilized as women's gain and improvement of social status, flaunting of economical status and a symbol of individuality and identity.

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Risk and Sensitivity Analysis during the Low Power and Shutdown Operation of the 1,500MW Advanced Power Reactor (1,500MW대형원전 정지/저출력 안전성향상을 위한 설계개선안 및 민감도 분석)

  • Moon, Ho Rim;Han, Deok Sung;Kim, Jae Kab;Lee, Sang Won;Lim, Hak Kyu
    • Transactions of the Korean Society of Pressure Vessels and Piping
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    • v.15 no.1
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    • pp.33-39
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    • 2019
  • An 1,500MW advanced power reactor required the standard design approval by a Korean regulatory body in 2014. The reactor has been designed to have a 4-train independent safety concept and a passive auxiliary feedwater system (PAFS). The full power risk or core damage frequency (CDF) of 1,500MW advanced power reactor has been reduced more than that of APR1400. However, the risk during the low power and shutdown (LPSD) operation should be reduced because CDF of LPSD is about 4.7 times higher than that of internal full power. The purpose of paper is to analysis design alternatives to reduce risk during the LPSD. This paper suggests design alternatives to reduce risk and presents sensitivity analysis results.

Coupled irradiation-thermal-mechanical analysis of the solid-state core in a heat pipe cooled reactor

  • Ma, Yugao;Liu, Jiusong;Yu, Hongxing;Tian, Changqing;Huang, Shanfang;Deng, Jian;Chai, Xiaoming;Liu, Yu;He, Xiaoqiang
    • Nuclear Engineering and Technology
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    • v.54 no.6
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    • pp.2094-2106
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    • 2022
  • The solid-state core of a heat pipe cooled reactor operates at high temperatures over 1000 K with thermal and irradiation-induced expansion during burnup. The expansion changes the gap thickness between the solid components and the material properties, and may even cause the gap closure, which then significantly influences the thermal and mechanical characteristics of the reactor core. This study developed an irradiation behavior model for HPRTRAN, a heat pipe reactor system analysis code, to introduce the irradiation effects such as swelling and creep. The megawatt heat pipe reactor MegaPower was chosen as an application case. The coupled irradiation-thermal-mechanical model was developed to simulate the irradiation effects on the heat transfer and stresses of the whole reactor core. The results show that the irradiation deformation effect is significant, with the irradiation-induced strains up to 2.82% for fuel and 0.30% for monolith at the end of the reactor lifetime. The peak temperatures during the lifetime are 1027:3 K for the fuel and 956:2 K for monolith. The gap closure enhances the heat transfer but caused high stresses exceeding the yield strength in the monolith.

A Low Power smartRF Transceiver Hardware Design For 2.4 GHz Applications

  • Kim, Jung-Won;Choi, Ung-Se
    • Journal of IKEEE
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    • v.12 no.2
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    • pp.75-80
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    • 2008
  • There are many researches to reduce power consumption of battery-operated Transceiver for 2.4 GHz smartRF applications. However, components such as processor, memory and LCD based power managements reach the limit of reducing power consumption. To overcome the limit, this research proposes novel low-power Transceiver and transceiver Hardware Design. Experimental results in the real smartRF Transceiver show that the proposed methods can reduce power consumption additionally than component based power managements.

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Design of Power System Analysis Program Based on GUI (GUI 기반 전력계통 해석 프로그램 설계)

  • Kim, Sung-Gu;Lee, Kang-Wan
    • Proceedings of the KIEE Conference
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    • 2001.05a
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    • pp.223-225
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    • 2001
  • This paper presents the draft design of power system analysis program based on Graphic User Interface(GUI). According to an increase the power system size, it is not easy for the user to handle the power system analysis program. The power system analysis program based on GUI is necessary in order to increase the productivity of power system analysis tasks.

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Characteristics Analysis of the Fluid Power System for a Double-color Injection Molding Machine Development (이색 사출성형기 개발을 위한 유압시스템의 특성 검토)

  • Jang, J.S.
    • Transactions of The Korea Fluid Power Systems Society
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    • v.8 no.4
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    • pp.24-31
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    • 2011
  • Double-color Injection molding machine is the assembly of many kinds of mechanical, fluid power part and electric electronic control system. From in these, fluid power is a part where becomes the first core of this machine. Fluid power systems of double-color injection molding machine are modelled and analyzed using a commercial program AMESim. Partial system models which is divided according to functional operation are made and its analysis results shows how design parameters work on operational characteristics like pressure, flow rates, displacement at each node and so on. Analysis modeling and compared the data which gets from experiment and the analysis result which has a reliability got data. The results made by analysis will be used design of fluid power circuit for developing a double-color injection molding machine.

Design of the Power Conversion System for the Magnetic Levitation System (자기부상열차용 전원공급장치 설계)

  • Song, Byeong-Mun;Kye, Moon-Ho;Oh, Sung-Chul;Joe, Ki-Youn;Kim, Yo-Hee
    • Proceedings of the KIEE Conference
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    • 1990.11a
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    • pp.384-387
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    • 1990
  • This paper describes the design of the power conversion system for the 3-ton prototype magnetic levitation system. Electric power needed for the propulsion and levitation system of the vehicle is supplied by the wayside rectifier through the power rail and is picked up by the on board power collector, and is supplied to the propulsion VVVF inverter and levitation chopper. In this paper, design characteristic of the VVVF inverter, chopper and power source unit which provides control power to the levitation controller and levitation power to the chopper is described.

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Design of the low-power system using the limited source (제한된 전원을 사용하는 저전력 시스템 설계)

  • Kim, Do-Hun;Lee, Kyo-Sung;Kim, Yong-Sang;Park, Jong-Chul;Kim, Yang-Mo
    • Proceedings of the KIEE Conference
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    • 2003.04a
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    • pp.163-165
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    • 2003
  • Over the past several years, the application extent of the real-time systems is being expanded with the progress of civilization. An effort to minimize power consumption at the system is being accomplished in several fields from the design of an analog/digital circuit up to the device level Things of this effort have included the power optimum-technique to minimize power consumption at the digital logic circuit and the dynamic managed skill by means o( the decision of the operating system. In this paper, we designed of low power system by using Power-optimized method. As an effective low-power design, we designed the low power system which it has a monitoring system within the main board and a personal computer.

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Scan Cell Grouping Algorithm for Low Power Design

  • Kim, In-Soo;Min, Hyoung-Bok
    • Journal of Electrical Engineering and Technology
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    • v.3 no.1
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    • pp.130-134
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    • 2008
  • The increasing size of very large scale integration (VLSI) circuits, high transistor density, and popularity of low-power circuit and system design are making the minimization of power dissipation an important issue in VLSI design. Test Power dissipation is exceedingly high in scan based environments wherein scan chain transitions during the shift of test data further reflect into significant levels of circuit switching unnecessarily. Scan chain or cell modification lead to reduced dissipations of power. The ETC algorithm of previous work has weak points. Taking all of this into account, we therefore propose a new algorithm. Its name is RE_ETC. The proposed modifications in the scan chain consist of Exclusive-OR gate insertion and scan cell reordering, leading to significant power reductions with absolutely no area or performance penalty whatsoever. Experimental results confirm the considerable reductions in scan chain transitions. We show that modified scan cell has the improvement of test efficiency and power dissipations.

High Power Circuit Analysis with the Simulation Technique using Physical Models of Power Devices (물리적인 전력소자 모텔을 이용한 대용량 인버터 시뮬레이션 기술)

  • Yoon Jae Hak;Schroder D.
    • Proceedings of the KIPE Conference
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    • 2002.07a
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    • pp.330-333
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    • 2002
  • The design of high power electronic circuits and the verification of the design by practical experiments are time and cost consuming. Recently power circuit simulation technique is developing to do it easily. However, most of the simulation has used the ideal switch model consists of passive component that can not describe the physical characteristics of semiconductor devices and cannot describe the switching transient state. For the design of such power electronic circuits by the simulation, the switching transients are very important. Therefore the simulation models must describe the switching transient and the stationary behavior as precisely as possible on the hand and as fast as possible the other hand. This paper introduces the application of the physical models of power devices that are developed by TUM(Technical University of Munich, Germany) for the power electronic circuit analysis.

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