Symbiotic evolution mechanism of urban air mobility industrial innovation ecosystem: Evidence from low altitude air mobility in Shenzhen

IF 3.9 2区 工程技术 Q2 TRANSPORTATION
Xinhui Ren, Jiarui Wang
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引用次数: 0

Abstract

The symbiotic evolution of subjects within the urban air mobility industrial innovation ecosystem is crucial for fostering coordinated development among stakeholders. It serves as a key foundation for achieving mutual benefits and driving high-quality growth in the low-altitude economy. Based on the conceptual model of the urban air mobility industrial innovation ecosystem, the Lokta-Volterra symbiotic evolution model is introduced. Different symbiotic evolution patterns within the system are simulated. Taking the innovation ecosystem of the low-altitude air mobility industry in Shenzhen as an example, the grey estimation method is used to measure the coefficient of symbiosis. This method helps identify the symbiotic relationship of the subjects within the system and analyze the mechanism of symbiotic evolution of the subjects within the innovation ecosystem of the urban air mobility industry under different evolutionary stages. The results show that: (1) The symbiotic relationship between the symbiotic subjects is determined by the symbiotic coefficient. (2) The symbiotic relationships among system subjects vary at different stages. When the symbiotic coefficients are all greater than zero, the subjects reach a reciprocal symbiotic relationship. (3) The innovation ecosystem of the low-altitude air traffic industry in Shenzhen is in the transition stage from growth to higher-order growth evolution. The subject has experienced the evolution process of dual-subject competitive symbiosis, single-subject biased symbiosis, and dual-subject competitive symbiosis. This study provides reference suggestions for the future symbiotic and synergistic development of the urban air mobility industry in the context of the low-altitude economy in other cities from the aspects of industrial balance, subject synergy and scenario innovation.
城市空中交通产业创新生态系统的共生演化机制:来自深圳低空空中交通的证据
城市空中交通产业创新生态系统中主体的共生进化对于促进利益相关者之间的协调发展至关重要。这是实现互利共赢、推动低空经济高质量发展的重要基础。在城市空中交通产业创新生态系统概念模型的基础上,引入Lokta-Volterra共生进化模型。模拟了系统内不同的共生进化模式。以深圳市低空空中交通产业创新生态系统为例,采用灰色估计法对共生系数进行测度。该方法有助于识别系统内各主体的共生关系,分析不同演化阶段下城市空中交通产业创新生态系统内各主体的共生演化机制。结果表明:(1)共生主体之间的共生关系由共生系数决定。(2)系统主体之间的共生关系在不同阶段有所不同。当共生系数均大于零时,受试者达到互反共生关系。(3)深圳市低空空中交通产业创新生态系统正处于由成长型向高阶成长型演进的过渡阶段。主体经历了双主体竞争共生、单主体偏激共生、双主体竞争共生的演化过程。本研究从产业平衡、主体协同、场景创新等方面为未来其他城市低空经济背景下城市空中交通产业的共生协同发展提供了参考建议。
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来源期刊
CiteScore
12.40
自引率
11.70%
发文量
97
期刊介绍: The Journal of Air Transport Management (JATM) sets out to address, through high quality research articles and authoritative commentary, the major economic, management and policy issues facing the air transport industry today. It offers practitioners and academics an international and dynamic forum for analysis and discussion of these issues, linking research and practice and stimulating interaction between the two. The refereed papers in the journal cover all the major sectors of the industry (airlines, airports, air traffic management) as well as related areas such as tourism management and logistics. Papers are blind reviewed, normally by two referees, chosen for their specialist knowledge. The journal provides independent, original and rigorous analysis in the areas of: • Policy, regulation and law • Strategy • Operations • Marketing • Economics and finance • Sustainability
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