• 제목/요약/키워드: Technology Development

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Research on Correlation between Innovative Activities & Development Strategies of New Product and Development Performance in Taiwan's High-tech Companies

  • Chung, Yi-Chan;Tsai, Chih-Hung;Deng, Wei-Jaw;Chen, Wen-Chin
    • International Journal of Quality Innovation
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    • 제7권2호
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    • pp.157-172
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    • 2006
  • Due to the advancement of technology and rapidly changing environment of the market, the life cycle of high-tech products is becoming shorter. The enterprise must constantly innovate and select correct development strategy of new product in order to respond to customers' demands for upgrading operational performance of industry. Development of new product is the critical activity for enterprise's survival and growth. This research focuses on the effects of Taiwan high-tech companies' introduction of innovative activity and development strategy of new product on development performance of new product for analysis and exploration. The result findings reveal that: (1) High execution degree of innovative activity has positive effect on the implementation of development strategy of new product; (2) The companies with better implementation of development strategy of new product reveal better development performance; (3) The companies with higher degree of execution of innovative activity and better execution of development strategy of new product reveal better development performance of new product.

ETRI AI 실행전략 7: AI로 인한 기술·사회적 역기능 방지 (ETRI AI Strategy #7: Preventing Technological and Social Dysfunction Caused by AI)

  • 김태완;최새솔;연승준
    • 전자통신동향분석
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    • 제35권7호
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    • pp.67-76
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    • 2020
  • Because of the development and spread of artificial intelligence (AI) technology, new security threats and adverse AI functions have emerged as a real problem in the process of diversifying areas of use and introducing AI-based products and services to users. In response, it is necessary to develop new AI-based technologies in the field of information protection and security. This paper reviews topics such as domestic and international trends on false information detection technology, cyber security technology, and trust distribution platform technology, and it establishes the direction of the promotion of technology development. In addition, the development of international trends in ethical AI guidelines to ensure the human-centered ethical validity of AI development processes and final systems in parallel with technology development are analyzed and discussed. ETRI has developed AI policing technology, information protection, and security technologies as well as derived tasks and implementation strategies to prepare ethical AI development guidelines to ensure the reliability of AI based on its capabilities.

출연(연)의 신기술개발 동향분석 연구

  • 이병민
    • 한국기술혁신학회:학술대회논문집
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    • 한국기술혁신학회 2003년도 춘계학술대회
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    • pp.413-425
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    • 2003
  • Information Technology is the kernel technology deciding the industrial standard of one nation, and biotechnology will be the main technology of next generation. Based on this fact, a lot of efforts were made to industrialize them. Nano Technology is beginning to position itself as the kernel fusion technology, and its usage and popularity is expanding. Environmental and Energy Technology is a must-have strategic technology considering the increase demand of new energy development, the international environment correspondence, the environment-friendly production, and so forth. Space Technology is the field, which will contribute to raise the domestic component and system technology to the next level. In 2001, new technology research development costs total of 1 trillion 32 billion won in the following fields; 437.82 billion won in IT, 88.457 billion won in BT, 46.799 billion won in NT, 315.682 billion won in ET, and 112 billion won in ST. from component ratio, IT forms 42% which is the most, 31% for ET and in order of BT, ST and NT. ETRI and KISTI are concentrating on IT, KIBB is on BT, KAERI, KIER, KERI and KBSI are focusing on ET, and KIMM, KRISS, KRICT and KORDI is participating together in 4∼5 new technology such as IT, BT, NT and ET. Funds for research development costs in 5 new technology fields of 13 contribution (year) are consisted as follows; The Office for Government Policy Coordination has contributed 131 billion won (13%), 387 billion won (37%) by MOST, 256 billion won (25%) by Ministry of Information and Communication, 67 billion won (6%) by Ministry of Commerce, Industry and Energy, 19% by others and the industrial world. < Strategy for Technology Advancing > o Promotion of comprehensive contributing (year) new technology development research plan project o Increase research efficiency by promoting new technology development project connected with peculiar projects of organization by contribution (year) o Formation of superior research group by technology and introduction of operation system for research accumulation are needed. o Technology demand-oriented assignment deduction and promotion of research development project connected with intermediate long term objective o National will and investment extension of research development costs, training and popularization of professionals, commercialization promotion with efficient control for research plan and result.

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환경기술 혁신전략 (Innovation Strategies of Environmental Technology)

  • 이규승
    • 기술혁신학회지
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    • 제1권1호
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    • pp.37-44
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    • 1998
  • General problems of environmental contamination, scope of environmental science and technology, some considerations to the development of Korean environmental technology, and G-7 environmental engineering technology Projects were shortly reviewed, And four different strategies for innovation of Korean environmental technology. First, development of Energy Policy and environmental technology based on the pro - environmental thought; second, development of systematic environmental science and technology : third, strengthening of pre- deliberation for imported foreign technology and promotion of utilization of native developed technology; finally, maximization of abilities for researchers and engineers in environmental technology field.

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산학 기술 협력 참여기업의 참여목적, 참여프로그램, 만족도 평가 (A Study on Evaluation of Purpose, Program and Satisfaction for Participating Company for Industry-University Technology Cooperation)

  • 이상천;배성문;박종훈
    • 산업경영시스템학회지
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    • 제39권4호
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    • pp.40-48
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    • 2016
  • The engineering knowledge and technology is core driving forces of continuous growth in knowledge based society. Companies, the government, and universities are the subjects of an innovation and the cooperation between them is very important. Nowadays, the main purpose of industry-university cooperation moves to train experts and develop a new product. A shift of the paradigm came from the change of recognition that the final consumers of the program are companies and the universities are supporters of the program. In this paper, we investigate the purpose, participation and satisfaction of companies to industry-academy technology cooperation through empirical studies. The need to expert training, product development and process development makes companies participate industry-academy technology cooperation and companies have different purpose of participation by the business type. Companies often feel that expert training, subsidiary purpose of industry-academy technology cooperation, is more important than product development or process development. This result is caused by the real world environment of small and mid-size companies, lacking of technology experts. The participation of companies to each technology cooperation program (technology transfer, joint technology development, consigned technology development, technology consulting, co-op. lab.) is also different by business type. The companies' satisfaction with the purpose of process development is relatively higher than that with the purpose of product development and companies show also different satisfaction value by business type and participating program. The results of this study can give a contribution to the design of demand oriented industry-academy technology cooperation model.

한국과 OECD 국가의 에너지기술 R&D 투자규모 비교 (An Energy Technology R&D Investment Analysis of OECD Countries and Korea)

  • 민윤지
    • 통상정보연구
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    • 제16권4호
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    • pp.363-384
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    • 2014
  • 본 연구는 우리나라와 OECD국가들의 에너지기술 연구개발비 규모를 다양한 측면에서 비교하고 그 시사점을 제안한다. 에너지부문의 기술개발투자에 관한 국가 비교 시, 다양한 비교 기준이 갖는 의미를 논의하고, OECD Statistics의 국가별 에너지기술 연구개발비 예산을 활용하여 새롭게 에너지 기술에 관한 국가별 관심도를 측정할 수 있는 지표를 제안한다. 비교결과 우리나라의 에너지기술개발을 위한 연구투자에 대해 2010년을 기준으로 OECD 국가 중 5위의 수준으로 비교적 높은 연구투자를 하고 있다. 또한 국가규모 대비 에너지기술개발을 위한 연구투자수준도 OECD 국가 중 6위로 비교적 높은 수준의 에너지기술개발에 대한 관심을 갖는 듯하였다. 그러나 국가의 경제력 등을 통제한 후, 순수하게 에너지기술개발의지를 살펴보았더니 OECD국가 중 20위로 평균에도 못 미치고 있는 수준이었다. 에너지기술개발에 대한 투자가 다른 국가들에 비해 상대적으로 높은 수준이지만, 그것이 곧 에너지기술개발의 필요성 및 관심도를 기본으로 출발했다고 보기 어렵기 때문에 에너지산업의 빠른 성장으로 이어질지는 장담할 수 없다. 한 국가의 에너지경제의 근본적인 경쟁력확보 및 성장은 순수한 필요성에 대한 인지가 선행되어야 가능할 수 있는 일이다.

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군용 무인기의 항공전자 아키텍처 설계 (Avionics Architecture Design for Military Unmanned Aerial Vehicles)

  • 심재익;최재원;김용태;유동완;양국보;하현석;김상진;이승열;정상준
    • 한국군사과학기술학회지
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    • 제25권6호
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    • pp.628-636
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    • 2022
  • This paper describes the design of the avionics architecture for military unmanned aerial vehicles considering the airworthiness requirements for the first time. This design considers the redundancy in the system data bus and the power system and the data link system to meet the system safety requirements of the airworthiness requirements of military UAVs. This avionics architecture design has been verified through the system integration test and the flight test after manufacturing the UAV.

기술난이도와 기술성숙도를 이용한 핵심기술 연구개발 위험도 관리에 관한 연구 (A Study on the Risk Management of Core Technology R&D Project using Degree of Difficulty and Technology Readiness Level)

  • 이태형
    • 한국군사과학기술학회지
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    • 제19권6호
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    • pp.789-796
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    • 2016
  • In the Core Technology R&D of the defence area, the development of the related core element technology could be the foundation to develop advanced weapon system in the future. But it might make various problems if you can not accurately define the TRL of the element technology. In other words, if the technology is not sufficiently mature and then the project starts, it might require an increase in the development period and additional cost. Finally the system will be in an incomplete state and result in user dissatisfaction and the project failure. Therefore it is a very important task to properly assess the TRL for a successful project. In this study, We propose the method for risk management of core technology R&D project of the defence area using the QFD process with degree of difficulty and technology readiness level. It is also presented the process to determine the risk level using TRL and Degree of difficulty. Finally We apply this method to UGV system for verifying the result of this study.

개방형 기술혁신 기반의 지배적 디자인 기술개발 및 확보 전략 : 현대중공업의 HSP(High Skewed Propeller) 설계 및 생산 시스템 (Dominant Design Technology Strategy Based on Open Innovation : High Skewed Propeller(HSP) Design and Production System of Hyundai Heavy Industries Co.)

  • 안연식;김화영
    • Journal of Information Technology Applications and Management
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    • 제25권1호
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    • pp.1-17
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    • 2018
  • This study presents a research model that demonstrates the dominant design technology strategy for developing and securing dominant design technology based on open innovation. For this purpose, this study developed a strategic model for the development and acquisition of design technology, production technology, and production system of propeller which satisfies the requirements of ship propulsion system required by ship owners and shipbuilders. By studying large propellers for ships, it is possible to embody a strategic model that can be used as a technology development strategy of dominant design that is effective in technology field of other industries. In this study, HSP (High Skewed Propeller) strategy of Hyundai Heavy Industries, which occupies the largest global market share (47.5%, 2007) for more than 30 years until now, is analyzed as a successful case to verify this strategic model. The development and acquisition strategy model of dominant design technology presented in this study consists of four stages : dominant design project strategy, dominant design engineering technology strategy, dominant design production technology strategy, and dominant design production system strategy. The strategic model summarizes the key activities at each stage. In addition, the steps and core activities of this strategic model were confirmed through the case study. As a technology development strategy of HSP products, Hyundai Heavy Industries utilized open innovation technology to cooperate with outside, that is, collaborative research and development with KAIST (Korea Advanced Institute of Science and Technology) research team, and succeeded in achieving technology development of dominant design of HSP products by linking it with HSP technology development and acquisition strategy.