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The New Quality Productivity Logic and Promotion Path for High-quality Development of Low Altitude Economy |
ZHONG Cheng-lin1, HU Xue-ping2 |
1. School of Finance, Jiangxi Normal University, Nanchang, Jiangxi, 330022; 2. School of Economics, Zhongnan University of Economics and Law, Wuhan, Hubei, 430073 |
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Abstract Digital new quality productivity (DNQP) is a kind of productivity that is driven by digital technology innovation. In contrast, a low altitude economy is a kind of comprehensive economy type that is based on the general aviation industry combined with other periphery industries. In the process of historical development, DNQP continuously permeated into a low economic evolution process and showed an obvious energizing trend. The research demonstrated that DNQP played an important role in promoting the high-quality development of the low-altitude economy. On the one hand, the embedding of digital new quality productivity will stimulate low-altitude system innovation, technological innovation and product innovation. Meanwhile, DNQP will re-engineer the workflow of each link of the low-altitude economy, improving the level of operation productivity and ecological efficiency as well, as promoting the green transformation of the low-altitude economy. What's more, the embedding of DNQP will increase the supply of low-altitude products, strengthen the leading function of low-altitude industries, and promote the sharing level of low-altitude consumption and wealth. On the other hand, the integrated application of DNQP will innovate the low-altitude marketing channels, improve its rationing structure, enable low-altitude monitoring, and promote the internal and external coordination of the low-altitude economy. Nevertheless, absorbing DNQP will accelerate the process of opening low-altitude airspace, low-altitude investment, and low-altitude products. Further research shows that the above enabling effect still encountered some difficulties including but not limited to a narrow enabling range, unbalanced enabling effect, weak enabling foundation, and information security problems. Therefore, we should further accelerate the integration process of “DNQP and the high-quality development of the low-altitude economy”, innovate the low-altitude information supervision mechanism, jointly promote the supply and demand side reform of the low-altitude industry, and adopt dimensional heterogeneous aid policies.
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Received: 20 August 2024
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[1] 张晓兰,黄伟熔.低空经济发展的全球态势、我国现状及促进策略[J].经济纵横,2024,(8):53-62. [2] 习近平在中共中央政治局第十一次集体学习时强调加快发展新质生产力扎实推进高质量发展[N].人民日报,2024-02-02(001). [3] 许嘉扬,郭福春.新质生产力与经济高质量发展:动力机制与政策路径[J].浙江学刊,2024,(4):43-50. [4] 洪银兴. 新质生产力及其培育和发展[J].经济学动态,2024,(1):3-11. [5] 黄群慧,盛方富.新质生产力系统:要素特质、结构承载与功能取向[J].改革,2024,(2):15-24. [6] 任保平. 生产力现代化转型形成新质生产力的逻辑[J].经济研究,2024,59(3):12-19. [7] 张振鹏. 中国文化产业新质生产力的核心要素及其结构形态[J].深圳大学学报(人文社会科学版),2024,41(4):47-55. [8] 程恩富,刘美平.新质生产力的学理分析与培育路径[J].上海经济研究,2024,(5):5-15. [9] 刘志彪,凌永辉,孙瑞东.新质生产力下产业发展方向与战略——以江苏为例[J].南京社会科学,2023,(11):59-66. [10] 张新宁,蔡薛文.新质生产力驱动高质量发展的动力机制探析[J].上海经济研究,2024,(6):5-19. [11] 孙佐. 新质生产力赋能经济高质量发展探析——基于CiteSpace的可视化分析[J].西南民族大学学报(人文社会科学版),2024,45(7):231-240. [12] 任保平,豆渊博.数据、算力和算法结合反映新质生产力的数字化发展水准[J].浙江工商大学学报,2024,(3):91-100. [13] 刘蕾,张新亚.新质生产力赋能公共服务高质量发展的机理与进路[J].江苏社会科学,2024,(4):82-91+242. [14] 王曦. 数字新质生产力、国内国际双循环与经济高质量发展[J].统计与决策,2024,40(10):17-22. [15] 赵涛,张智,梁上坤.数字经济、创业活跃度与高质量发展——来自中国城市的经验证据[J].管理世界,2020,36(10):65-76. [16] 耿子恒,孟山月,杨宜勇.新质生产力何以驱动高质量发展[J].社会科学研究,2024,(4):48-55. [17] 张任之. 数字平台企业高质量发展驱动形成新质生产力的内在逻辑和实现路径[J].理论学刊,2024,(4):122-130. [18] 钞小静,王清.新质生产力驱动高质量发展的逻辑与路径[J].西安财经大学学报,2024,37(1):12-20. [19] 张嘉昕,许倩.低空经济产业链发展的制约因素与优化对策研究[J].经济纵横,2024,(8):63-70. [20] 中国社会科学院经济研究所课题组,黄群慧,原磊等.新征程推动经济高质量发展的任务与政策[J].经济研究,2023,58(9):4-21. [21] 刘洋,李浩源.新质生产力赋能高质量发展的逻辑理路、关键着力点与实践路径[J].经济问题,2024,(8):11-18+129. [22] 钟成林,张迁,贾俊松.数字经济对城市群工业低碳协同的赋能与治理[J].财经问题研究,2024,(7):88-101. [23] Vempati L,Woods S,Solano R C.Qualitative Analysis of General Aviation Pilots' Aviation Safety Reporting System Incident Narratives Using the Human Factors Analysis and Classification System[J].Information Journal of Aero-space Psychology,2023,33(3):182-196. [24] Gupta S,Pitts B J,Johnson M E.Automated Spoken-to-Coded Pilot Weather Reports in General Aviation[J].Journal of Aerospace Information System,2024,21(7):568-578. [25] 高启明. “十三五”时期我国通用航空产业转型面临的挑战与发展思路[J].经济纵横,2016,(2):29-34. |
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