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      복합제품시스템 (CoPS) 혁신 관점에서 본 중국 우주산업의 추격 -유인우주선 프로젝트 사례 분석- = A Study on China`s Catch up in Space Industry from CoPS Perspective -Manned Spaceship Development Plan-

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      https://www.riss.kr/link?id=A99845803

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      다국어 초록 (Multilingual Abstract)

      Space industry is quite important to China. It has political meaning to show that China becomes a strong country as the development in this industry symbolizes science technology development of China. On the other hand, as technology in this industry is directly related with national defense such as missile, aviation and communication, it also has strategic meaning, as well. Therefore, Chinese government has supported this industry actively and has accomplished projects such as spacecraft launching and space station docking successfully. China will propel various space projects such as space station operation, moon exploration, and establishment of GPS in near future of Xi-Li administration. Thus, space industry in China is catching up that of developed countries rapidly in technology and market. Because of various competencies necessary during the innovation process, such successful catching up in space industry is quite rare in general developing countries. As a matter of fact, space industry is being led by ex-ultra-strong countries such as USA and Russia and EU and Japan are following them. Although Brazil, India and Korea make efforts to develop space industry, catch up speed is slow. With this background, this article analyzes success factors of space industry catch up in China from the perspective of innovation in complex product system (CoPS). Complex product system has high development cost and requires the reflection of customers` demands. Therefore, innovation in such system can be distinctively distinguished from the innovation of mass-produced commodity industry (Hobday, 1998). In analysis, this article focus on the best practices in manned spaceship launching projects of China in order to identify the causes of catch up success of China in space industry. Manned spaceship development plan of China is the case with all the characteristics of innovation of complex product system development, which is very important example achieving projects successfully in China. Through case studies, this article may be able to induce conclusions to give suggestions to the process of development of communication facilities, development of high speed railway, and development and construction of nuclear plants of the developing countries. Additionally, we may be able to forecast the direction and strategies of space industry in China by summarizing the progress of space industry in China.
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      Space industry is quite important to China. It has political meaning to show that China becomes a strong country as the development in this industry symbolizes science technology development of China. On the other hand, as technology in this industry ...

      Space industry is quite important to China. It has political meaning to show that China becomes a strong country as the development in this industry symbolizes science technology development of China. On the other hand, as technology in this industry is directly related with national defense such as missile, aviation and communication, it also has strategic meaning, as well. Therefore, Chinese government has supported this industry actively and has accomplished projects such as spacecraft launching and space station docking successfully. China will propel various space projects such as space station operation, moon exploration, and establishment of GPS in near future of Xi-Li administration. Thus, space industry in China is catching up that of developed countries rapidly in technology and market. Because of various competencies necessary during the innovation process, such successful catching up in space industry is quite rare in general developing countries. As a matter of fact, space industry is being led by ex-ultra-strong countries such as USA and Russia and EU and Japan are following them. Although Brazil, India and Korea make efforts to develop space industry, catch up speed is slow. With this background, this article analyzes success factors of space industry catch up in China from the perspective of innovation in complex product system (CoPS). Complex product system has high development cost and requires the reflection of customers` demands. Therefore, innovation in such system can be distinctively distinguished from the innovation of mass-produced commodity industry (Hobday, 1998). In analysis, this article focus on the best practices in manned spaceship launching projects of China in order to identify the causes of catch up success of China in space industry. Manned spaceship development plan of China is the case with all the characteristics of innovation of complex product system development, which is very important example achieving projects successfully in China. Through case studies, this article may be able to induce conclusions to give suggestions to the process of development of communication facilities, development of high speed railway, and development and construction of nuclear plants of the developing countries. Additionally, we may be able to forecast the direction and strategies of space industry in China by summarizing the progress of space industry in China.

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      참고문헌 (Reference)

      1 항공우주학회, "항공우주학개론" 경문사 2011

      2 전완주, "최근 중국의 우주개발 확대동향과 특징 고찰" 73 : 22-42, 2011

      3 전완주, "중국의 凡지구적 위성항법시스템 구축 배경과 파급 영향 고찰" 국가안보전략연구원 (165) : 123-148, 2010

      4 장영근, "인공위성 시스템" 경문사 1997

      5 노성호, "외부 지식네트워크에의 접근가능성과 산업추격: 중국 반도체 산업의 사례" 현대중국학회 15 (15): 135-174, 2013

      6 黄春平, "载人航天运载火箭科研管理" 科学出版社发行部 2007

      7 黄春平, "大协作:中国载人航天工程运载火箭电子元器件发展纪实" 中国宇航出版 2007

      8 "北京航天计量测试技术研究所"

      9 "中国载人航天工程"

      10 "中国航天科技集团公司"

      1 항공우주학회, "항공우주학개론" 경문사 2011

      2 전완주, "최근 중국의 우주개발 확대동향과 특징 고찰" 73 : 22-42, 2011

      3 전완주, "중국의 凡지구적 위성항법시스템 구축 배경과 파급 영향 고찰" 국가안보전략연구원 (165) : 123-148, 2010

      4 장영근, "인공위성 시스템" 경문사 1997

      5 노성호, "외부 지식네트워크에의 접근가능성과 산업추격: 중국 반도체 산업의 사례" 현대중국학회 15 (15): 135-174, 2013

      6 黄春平, "载人航天运载火箭科研管理" 科学出版社发行部 2007

      7 黄春平, "大协作:中国载人航天工程运载火箭电子元器件发展纪实" 中国宇航出版 2007

      8 "北京航天计量测试技术研究所"

      9 "中国载人航天工程"

      10 "中国航天科技集团公司"

      11 "中国航天科工集团公司"

      12 Hobday, M., "The project-based organization: an ideal form for managing complex products and systems" 29 (29): 871-893, 2000

      13 Choung, J. Y., "The co-evolution of technology and institution in the Korean information and communications industry" 36 (36): 249-266, 2006

      14 Kevin Pollpeter, "The chinese Human Spaceflight Program" 2011

      15 Pavitt, K., "Sectoral patterns of technical change: towards a taxonomy and a theory" 13 (13): 343-373, 1984

      16 Hobday, M., "Product complexity, innovation and industrial organization" 26 (26): 689-710, 1998

      17 Davies, A., "Policies for a complex product system" 30 (30): 293-304, 1998

      18 Davies, A., "Organizational capabilities and learning in complex product systems: towards repeatable solutions" 29 (29): 931-953, 2000

      19 Hughes, T., "Networks of Power: Electrification in Western Society, 1880~1930" Johns Hopkins University Press 1983

      20 Woodword, J., "Management and Technology" Her Majestry’s Stationary Office 1958

      21 Park, Tae-Young, "How a Latecomer succeeded in a Complex Product System Industry: Three Case Studies in Korean Telecommunication System" Industrial Corporate Change Advance access Published 1-34, 2012

      22 Walker, W., "From Components to Integrated Systems: Technological Diversity and Integration between the Military and Civilian Sector, In The Relations Between Defence and Civil Technologies" Kluwer Academic 1988

      23 Cheung, Tai Ming, "Fortifying China: The Struggle to Build Modern Defense Economy" Cornell University Press 2009

      24 Mark A. Stokes, "China’s Evoloving Space capabilities: Implication for US Interests" Project 2049 Institute 2012

      25 Abramovitz, M., "Catching Up, Forging Ahead, and Falling Behind" 46 (46): 385-406, 1986

      26 Prencipe, A., "Breadth and depth of technological capabilities in CoPS: the case of the aircraft engine control system" 29 (29): 895-911, 2000

      27 Hobday, M., "A fast method for analyzing and improving complex software processes" 30 (30): 1-21, 2000

      28 Kline, J. S., "A Numerical Measure for the Complexity of systmes: the Concept and Some Implications" Stanford University 1990

      29 Shenhar, J. A., "A New Conceptual Framework for Modern Project Management" 1994

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      연월일 이력구분 이력상세 등재구분
      2026 평가예정 재인증평가 신청대상 (재인증)
      2020-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2017-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2013-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2010-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2009-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2007-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.39 0.39 0.41
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.35 0.34 0.553 0.31
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