• Title/Summary/Keyword: Industrial field

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Analysis of the impact of government regulatory innovation efforts and regulatory irrationality perceptions in AI and DATA services on companies' regulatory response efforts to continue their businesses (AI·DATA 서비스 분야 정부 규제혁신 노력 및 규제 불합리 인식이 기업들의 사업 지속을 위한 규제대응 노력에 미치는 영향 분석)

  • Hye Lim Song;Myoung Sug Jung;Joo Yeoun Lee
    • Journal of the Korean Society of Systems Engineering
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    • v.20 no.1
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    • pp.1-15
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    • 2024
  • This study attempted to analyze whether the government's regulatory innovation efforts affect the continued operation of new products and new service-based businesses, such as regulatory compliance and response efforts, despite the perception of regulatory difficulties as business barriers for firms in new industries. Previous studies on the impact of regulations on companies in new industries were a limit to obtaining implications for regulatory issues and characteristics of each field due to the simplification of regulatory indicators and the establishment of field integration. To compensate for this, this study focused on the field of AI and DATA services, and subdivided regulatory issues to indicate practical inconvenience as variables, and model fit and hypothesis verification were performed by applying Structural Equation Model analysis based on the survey results of related companies. As a result, in the field of AI and DATA services, "Perceived regulatory irrationality" and "Perceived government regulatory innovation efforts" significantly affect the "Regulatory environment satisfaction" of the regulated, and "Perceived regulatory irrationality" and "Regulatory environment satisfaction" affect "Regulatory response efforts for companies in new industries to continue their businesses." The significance of this study is that it conducted research on the factors affecting the continuity of business of companies in the AI and DATA service sector by linking the analysis of the impact relationship between satisfaction and continuous use intention, which have been mainly used in the "Policy Acceptance Model" and "IT service sector," to "efforts for companies to continue their business in a new industrial regulatory environment." In addition, by presenting a new empirical model for new industry regulations, it is expected to be meaningful as it can provide a research foundation that can obtain practical implications in related fields.

Exploring the Lifelong Education Field Experience of Adult College Students (성인대학생의 평생교육 현장실습 경험 탐구)

  • Song, Seong-Suk
    • Journal of Industrial Convergence
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    • v.19 no.5
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    • pp.47-59
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    • 2021
  • This study explored the lifelong education field experience of adult college students. For this purpose, a qualitative case study was conducted with 5 adult college students from November 17, 2020 to May 14, 2021 through practical diaries, assignment analysis and in-depth interviews. As a result of the study, we discovered two things. First, the lifelong education field practice experience is a 'mountain to overcome! Lifelong education field practice', 'expansion of awareness of lifelong education', 'confidence field practice', and 'A picture is worth a thousand words'were revealed. Second, the meaning of the lifelong education field experience is 'formation of a learning community through teamwork with colleagues', 'realization that people are the core of the lifelong education', 'changes in the professional identity of the lifelong education history', and 'The life of a lifelong learning practitioner who wants to challenge' life' was revealed. These results will lead field training participants to grow qualitatively, and can be used as basic data for securing professional expertise and providing quality field training. A follow-up study was proposed for adult college students who belong to other colleges.

Technology Trends in Industrial Internet-of-Things Networks (산업용 사물인터넷 네트워크 기술 동향)

  • Kang, H.Y.;Park, M.R.;Lee, S.S.;Shin, C.S.;Park, C.W.
    • Electronics and Telecommunications Trends
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    • v.36 no.5
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    • pp.92-102
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    • 2021
  • Owing to various restrictions in-field application, the low-speed, low-power-based industrial Internet-of-Things (IoT) network built in extremely harsh industrial environment sites requires multi-hop, channel hopping, and low-latency transmission characteristics. In the past, wired networks were used in industrial facilities; however, network technologies based on the Industrial IoT Network standard standardized for industrial applications, such as WirelessIO link, WirelessHART, SmartMesh, and eStar Link satisfy industrial requirements. Recently, the use of industrial IoT networks in industrial facilities has rapidly expanded. This paper covers the developments in industrial IoT network technologies and summarizes the major industrial IoT standard technologies that meets the requirements of industrial sites.

Development of the Underwater Cleaning Robot Platform for a Higher Efficiency (고효율 수중청소로봇 플랫폼 기술 개발)

  • Suh, Jin-Ho;Lee, Jung-Woo;Kim, Jong-Geol;Choi, Young-Ho;Choi, Il-Seop
    • Journal of Power System Engineering
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    • v.21 no.3
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    • pp.74-84
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    • 2017
  • This paper presents the development of the underwater cleaning robot platform for a higher efficiency in manufacturing industry. Human operators directly go into the cistern and clean sludge after drainage of the water so far. It is sometimes dangerous because of the harmful chemical materials from the product making process. In addition, it takes long time for water drainage and supplying it back. However, the robot cleaning operation does not need to drain water so that it could be applied to the sludge cleaning work at any time without the plant pause. Moreover, it can prevent the safety accidents because human operators are not necessary to enter directly the sludge cisterns. This paper shows the performance of cleaning work that can be applied in the industrial field through the design and development of underwater cleaning robot platform. And these results demonstrate that the developed underwater cleaning robot has great possibilities to clean other industrial water cisterns.

Design of a small size insulationless superconducting rotor (인슐레이션을 제거한 소형 초전도 회전자 디자인)

  • Kim, Kwang-Min;Jung, Sung-Jun;Kim, Gyeong-Hun;Kim, Nam-Won;Park, Min-Won;Yu, In-Keun;Park, Tae-Joon;Kim, Tae-Won
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.792-793
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    • 2011
  • The purpose of this paper is to study the thermal and mechanical characteristics of HTS (high temperature superconductor) field magnet according to the design of a small size superconducting rotor without insulation. First, basic design data of superconducting rotor were acquired through electromagnetic analysis. Based on these data, analysis regarding mechanical and thermal characteristics of HTS field magnet was executed. Anisotropic condition was considered in the mechanical characteristics of HTS field magnet. Average values of specific heat and heat conductivity up to 30 K were used during the analysis of thermal characteristics. Analysis results show superior mechanical and thermal characteristics of insulationless HTS field magnet compared with insulated HTS field magnet.

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A NUMERICAL METHOD FOR THE MODIFIED VECTOR-VALUED ALLEN-CAHN PHASE-FIELD MODEL AND ITS APPLICATION TO MULTIPHASE IMAGE SEGMENTATION

  • Lee, Hyun Geun;Lee, June-Yub
    • Journal of the Korean Society for Industrial and Applied Mathematics
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    • v.18 no.1
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    • pp.27-41
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    • 2014
  • In this paper, we present an efficient numerical method for multiphase image segmentation using a multiphase-field model. The method combines the vector-valued Allen-Cahn phase-field equation with initial data fitting terms containing prescribed interface width and fidelity constants. An efficient numerical solution is achieved using the recently developed hybrid operator splitting method for the vector-valued Allen-Cahn phase-field equation. We split the modified vector-valued Allen-Cahn equation into a nonlinear equation and a linear diffusion equation with a source term. The linear diffusion equation is discretized using an implicit scheme and the resulting implicit discrete system of equations is solved by a multigrid method. The nonlinear equation is solved semi-analytically using a closed-form solution. And by treating the source term of the linear diffusion equation explicitly, we solve the modified vector-valued Allen-Cahn equation in a decoupled way. By decoupling the governing equation, we can speed up the segmentation process with multiple phases. We perform some characteristic numerical experiments for multiphase image segmentation.

Design and Construction of Test Field for Low Voltage Under Cable Fault Location Detection (저압 지중케이블 고장 위치 검출 실증 시험장 설계 및 구축)

  • Oh, Hun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.16 no.10
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    • pp.6666-6672
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    • 2015
  • Various reflectometry methods to locate power cable fault have been studied. But, most related studies has been verifying by simulation and laboratory test and study in conditions similar with real cable fault filed was not performed due to the absence of cable fault test field. Therefore, this paper design and construct test field for the standardized performance test and the operating education of cable fault location equipments. In the constructed test, open, short, half open and poor contact fault at 100m, 200m location of cable was produced and 1km cable role was installed for maximum distance measurement test. The test field will be used in the development and standardization of cable fault location technology, and te performance evaluation and certificate test of the related equipments.

A Study of Carbon Nanotube Channel Field-Effect Devices (탄소 나노튜브 채널을 이용한 전계효과 이온-전송 소자 연구)

  • Lee, Jun-Ha;Lee, Hoong-Joo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.7 no.2
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    • pp.168-174
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    • 2006
  • We investigated field-effect ion-transport devices based on carbon nanotubes by using classical molecular dynamics simulations under applied external force fields, and we present model schematics that can be applied to the nanoscale data storage devices and unipolar ionic field-effect transistors. As the applied external force field is increased, potassium ions rapidly flow through the nanochannel. Under low external force fields, thermal fluctuations of the nanochannels affect tunneling of the potassium ions whereas the effects of thermal fluctuations are negligible under high external force fields. Since the electric current conductivity increases when potassium ions are inserted into fullerenes or carbon nanotubes, the field effect due to the gate, which can modify the position of the potassium ions, changes the tunneling current between the drain and the source.

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Field-Induced Translation of Single Ferromagnetic and Ferrimagnetic Grain as Observed in the Chamber-type μG System

  • Kuwada, Kento;Uyeda, Chiaki;Hisayoshi, Keiji;Nagai, Hideaki;Mamiya, Mikito
    • Journal of Magnetics
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    • v.18 no.3
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    • pp.308-310
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    • 2013
  • Translation induced by the field-gradient force is being observed for a single ferromagnetic iron grain and a ferrimagnetic grain of a ferrite sample ($CuFe_2O_4$). From measurements on the translation, precise saturated magnetization of $M_S$ is possible for a single grain. The method is based on the energy conservation rule assumed for the grain during its translation and the grain is translated through a diffuse area under microgravity conditions. The results of the two materials indicate that a field-induced translation of grain bearing spontaneous moment is generally determined by a field-induced potential $-mM_SH(x)$ where m denotes the mass of sample. According to the above translations, the detection of $M_S$ is not interfered by any signals from the sample holder. The $M_S$ measurement does not require m value. By observing translations resulting from fieldinduced volume forces, the magnetization of a single grain is measurable irrespective of its size; the principle is also applicable to measuring susceptibility of diamagnetic and paramagnetic materials.

Calibration and Performance Test of Hot-wire Anemometers by Using a Calibration Wind Tunnel (풍동장치를 이용한 열선풍소계의 보정 및 실태 평가)

  • Ha, Hyun-Chul;Kim, Tae-Hyeung;Kim, Eun-A;Kim, Jong-Chul;Oh, Jung-Ryng;Jung, Ho-Keun
    • Journal of Korean Society of Occupational and Environmental Hygiene
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    • v.9 no.2
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    • pp.110-122
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    • 1999
  • Hot-wire anemometers are most commonly used in measuring hood capture velocities due to their accuracy and convenience. But it was questionable that the anemometers being used in the field are accurate enough for the purpose of measurements. To answer this ques tion, a calibration wind tunnel was newly devised and tested. Subsequently, 53 hot-wire anemometers being currently used in the field were tested to evaluate the accuracy of anemometers. The average error was 16.93% while the average errors in the low (0.5~5m/s) and high (5~20m/s) velocity range were 17.40% and 16.45%, respectively. Most of anemometers underestimated the true velocities. It might be due to the contamination of hot-wire, resulting in the slow heat transfer between the sensor and air flow. Astonishingly, 16 of 53 anemometers were out of order due to the malfunctioning of zero adjustment control, power supply, display panel and sensor. It is desirable to calibrate periodically and clean the sensor after using in the dirty environment.

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