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Bulletin of Chinese Academy of Sciences (Chinese Version)

Keywords

key and core technologies; case study; path research; model research

Document Type

Understanding and Countermeasures for National Critical Technology Strategy

Abstract

Since the reform and opening up, China has made significant progress in economic and technological development. Nevertheless, the complex international situation has made us aware that there are still some visible and invisible key core technologies under the control of others, bring us into a passive situation in international competition. Technological advantages are increasingly being applied in political confrontations between nations, serving as important means of sanctions and invisible weapons. Being dependent on others for key and core technologies has become a hidden danger to China’s economic and social development. Based on case studies of some successful key and core technology breakthroughs and combining with the “window of opportunity theory” for latecomer countries to achieve technological catching-up, this study seeks the main entry points for breakthroughs according to the development stage of the technology, characteristics of market demand, and commercial attributes of products, determines the “catching-up model”, and provides both practical and theoretical significance for improving the institutional design of key and core technology breakthroughs.

First page

946

Last Page

958

Language

Chinese

Publisher

Bulletin of Chinese Academy of Sciences

References

1 余维新, 熊文明, 顾新. 关键核心技术领域产学研协同创新障碍及攻关机制. 技术与创新管理, 2021, 42(2): 127-134. Xu W X, Xiong W M, Gu X. Research on obstacles of I-U-R synergy innovation and the key mechanism in core technology areas. Technology and Innovation Management, 2021, 42(2): 127-134. (in Chinese)

2 谢常青, 朱效立, 牛洁斌, 等. 微纳金属光学结构制备技术及应用. 光学学报, 2011, 31(9): 251-258. Xie C Q, Zhu X L, Niu J B, et.al. Micro and Nano-Metal structures fabrication technology and applications. Acta Optica Sinica, 2011, 31(9): 251-258. (in Chinese)

3 余江, 陈凤, 张越, 等. 铸造强国重器:关键核心技术突破的规律探索与体系构建. 中国科学院院刊, 2019, 34(3): 339-343. Yu J, Chen F, Zhang Y, et.al. Forging pillars of scientific and technological power: Mechanism exploration and system construction for breakthrough of core and key technologies. Bulletin of Chinese Academy of Science, 2019, 34(3): 339-343. (in Chinese)

4 王可达. 提高我国关键核心技术创新能力的路径研究. 探求, 2019, (2): 38-46. Wang, K D. Research on ways to improve innovation ability of key core technology in China. TanQiu, 2019, (2): 38-46. (in Chinese)

5 陈劲, 朱子钦. 关键核心技术“卡脖子”问题突破路径研究. 创新科技, 2020, 20(7): 1-8. Chen J, Zhu Z Q. Research on the breakthrough path of the problems “blocking the neck” of key core technologies. Innovation Science and Technology, 2020, 20(7): 1-8. (in Chinese)

6 汤志伟, 李昱璇, 张龙鹏. 中美贸易摩擦背景下“卡脖子”技术识别方法与突破路径——以电子信息产业为例. 科技进步与对策, 2021, 38(1): 1-9. Tang Z W, Li Y X, Zhang L P. Identification method and breakthrough path of “neck-jamming” technologies under the background of Sino-US trade friction: A case of the electronic information industry. Science & Technology Progress and Policy, 2021, 38(1): 1-9. (in Chinese)

7 韩凤芹, 史卫, 陈亚平. 以大战略观统领关键核心技术攻关. 宏观经济研究, 2021, 10(3): 111-119. Han F Q, Shi W, Chen Y P. Lead the critical and core technology R&D with a big strategic vision. Macroeconomics, 2021, 10(3): 111-119. (in Chinese)

8 袁野, 汪书悦, 陶于祥. 人工智能关键核心技术创新能力测度体系构建:基于创新生态系统视角. 科技进步与对策, 2021, 38(18): 84-93. Yuan Y, Wang S Y, Tao Y X. Construction of measurement system for artificial intelligence core technology innovation capability: from the perspective of innovation ecosystem. Science & Technology Progress and Policy, 2021, 38(18): 84-93. (in Chinese)

9 胡旭博, 原长弘. 关键核心技术:概念, 特征与突破因素. 科学学研究, 2022, 40(1): 4-11. Hu X B, Yuan C H. Key core technologies: Concepts, characteristics, and breakthrough factors. Study in Science of Science, 2022, 40(1): 4-11. (in Chinese)

10 李哲. 面向国家战略需求的关键核心技术攻关组织模式研究. 人民论坛·学术前沿, 2023, (1): 12-22. Li Z. Research on the organizational model for key core technology R&D to meet national strategic needs. People’s Tribune, 2023, (1): 12-22. (in Chinese)

11 张杰. 中国关键核心技术创新的机制体制障碍与改革突破方向. 南通大学学报(社会科学版), 2020, 36(4): 108-116. Zhang J, Institutional obstacles and the direction of reform and breakthrough of the key and core technology innovation in China. Journal of Nantong University (Social Sciences Edition), 2020, 36(4): 108-116. (in Chinese)

12 朱德成, 刘从, 李欣欣. 新时期重大科技任务集中力量办大事的组织模式研究. 中国电子科学研究院学报, 2020, 15(4): 299-305. Zhu D C, Liu C, Li X X. A study on the organizational model of major scientific and technological projects under whole-nation system in the new period. Journal of China Academy of Electronics and Information Technology, 2020, 15(4): 299-305. (in Chinese)

13 胡登峰, 黄紫微, 冯楠, 等. 关键核心技术突破与国产替代路径及机制——科大讯飞智能语音技术纵向案例研究. 管理世界, 2022, 38(5): 188-209. Hu D F, Huang Z W, Feng N, et.al. Path and mechanism of core technology breakthrough and domestic substitution: A longitudinal case study of IFLY TEK intelligent speech technology. Journal of Management World, 2022, 38(5): 188-209. (in Chinese)

14 王刚, 刘飞香. 敢为人先创新引领中国盾构发展传奇. 交通建设与管理, 2019, (4): 14-19. Wang G, Liu F X. Daring to be the first to innovate and lead the legend of Chinese shield development. Transport Construction & Management, 2019, (4): 14-19. (in Chinese)

15 欧阳桃花, 曾德麟. 拨云见日——揭示中国盾构机技术赶超的艰辛与辉煌. 管理世界, 2021, 37(8): 194-207. Ouyang T H, Zeng D L. Dispel the clouds and see the sun: Reveal the hardship and glory of China’s shield machine technology catch-up. Journal of Management World, 2021, 37(8): 194-207. (in Chinese)

16 严蔼艳, 唐方成. 我国高铁技术创新的制度逻辑及变革路径. 科研管理, 2022, 43(2): 1-8. Yan A Y, Tang F C. Institutional logic and developmental path of technological innovation of China’s high-speed rail system. Science Research Management, 2022,43(2): 1-8. (in Chinese)

17 张杰. 告别键盘、鼠标与计算机人性化交流. 中国计算机用户, 2004, (39): 51-52. Zhang J. Bid farewell to the keyboard and mouse and communicate with computers in a user-friendly way. China Computer Users, 2004, (39): 51-52. (in Chinese)

18 胡萌. 人工智能企业开放式创新模式研究. 长沙: 湖南大学, 2022. Hu M. Research on Open Innovation Model of Artificial Intelligence Enterprise. Changsha: Hunan University, 2022. (in Chinese)

19 张勇. 北方重工——中国盾构机产业的领军企业. 城市轨道交通研究, 2009, 12(12): 116-123. Zhang Y. North Heavy Industry—China shield machine industry leader. Urban Mass Transit, 2009, 12(12): 116-123. (in Chinese)

20 倪思洁. 历时十多年,他们啃下这块“硬骨头”——我国首套盾构机用超大直径主轴承研制成功. 中国科学院报, 2022-12-15(01). Ni S J. After more than ten years of painstaking efforts, they managed to overcome this “tough nut”. China’s first set of super-large-diameter main bearings for shield machines has been successfully developed. China Science Daily, 2022-12-15(01). (in Chinese)

21 刘艳琼. 两弹一星工程的成功经验与启示. 长沙: 国防科学技术大学, 2002. Liu Y Q. The Successful Experiences and Enlightenments of the “Two Bombs, One Satellite” Project. Changsha: National University of Defense Technology, 2002. (in Chinese)

22 路风. 走向自主创新:寻求中国力量的源泉. 桂林: 广西师范大学出版社, 2006. Lu F. Towards Indigenous Innovation: Seeking the Source of China’s Power. Guilin: Guangxi Normal University Press, 2006. (in Chinese)

23 傅志华, 李成威, 韦扬, 等. 集中财力办大事与新型“举国体制”——从支持“两弹一星”的财政观说起. 财政科学, 2021, (4): 9-20. Fu Z H, Li C W, Wei Y, et.al. Concentrating financial resource for great things and new-type “Whole Nation System”—The public finance spirit inheriting from “Two Bombs and One Satellite”. Fiscal Science, 2021, (4): 9-20. (in Chinese)

24 贾宝余, 应验, 刘立. “点将配兵”与重大突破:重大战略科技领域创新要素的配置模式.中国科学院院刊, 2022, 37(1): 88-100. Jia B Y, Ying Y, Liu L. Pick up generals and deploy soldiers & major breakthrough: Allocation mode for innovation resources in national strategic S&T area. Bulletin of Chinese Academy of Science, 2022, 37(1): 88-100. (in Chinese)

25 张三保, 陈晨, 张志学. 举国体制演进如何推动关键技术升级?——中国3G到5G标准的案例研究. 经济管理, 2022, 44(9): 27-46. Zhang S B, Chen C, Zhang Z X. How does the evolution of the national system promote the upgrading of key technologies?—A case study of China’s 3G to 5G standards. Economic Management Journal, 2022, 44(9): 27-46. (in Chinese)

26 高旭东, 王舒扬, 李晓华, 等. 从“追赶周期”的视角理解我国电信设备产业的追赶与超越. 创新科技, 2020, 20(8): 15-28. Gao X D, Wang S Y, Li X H, et al. Understanding the catch-up and transcendence of China’s telecom equipment industry from the perspective of “Catch-up Cycles”. Innovation Science and Technology, 2020, 20(8): 15-28. (in Chinese)

27 Perez C, Soete L. Catching up in technology: Entry barriers and windows of opportunity. Frances Pinter. 1988, 458-479.

28 熊彼特. 经济发展理论. 北京: 中国社会科学出版社, 2009. Schumpeter J. The Theory of Economic Development. Beijing: China Social Science Press, 2009. (in Chinese)

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