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基于组合聚类的低空航路网络规划方法OA

A Low-Altitude Air Route Network Planning Method Based on Combinatorial Clustering

中文摘要英文摘要

城市低空航路的结构化和网络化规划,是缓解低空空域资源紧张、保障低空运行安全的有效途径.该文考虑城市低空物流场景的航线布设和通行流量的实际需求,以起降场地布局和实际运行流量为输入条件,提出了一种基于组合聚类的低空"主干-接驳"式航路网络规划方法.首先,分别通过主成分分析与数值优化方法确定最优主干航路走向,同时采用高斯分布模型、几何相似模型对聚类结果进行质量评估,构建4种差异化航路网络聚类方案;然后,建立包含航路网络总长度、建设成本、航路交叉点数量的综合评价指标体系,对4种聚类方法生成的航路网络方案进行优劣对比分析;最后,以绍兴市为实证算例,验证所提方法的可行性和有效性.结果表明:相较于初始规划方案,高密度场景下航路网络建设总成本下降21.39%,航路交叉点数量减少34.41%;中密度场景下网络建设总成本下降36.44%,航路交叉点数量减少16.92%.实例证明,该文所采用的"主成分分析-几何相似"组合聚类方法,可显著提升低空运行安全性和经济性,能够为城市低空交通系统的科学化规划提供理论依据和技术支撑.

The structured and networked planning of urban low-altitude air routes is an effective approach to alle-viating the shortage of low-altitude airspace resources and ensuring operational safety.Considering the actual requirements of route deployment and traffic flow in urban low-altitude logistics scenarios,this paper proposes a low-altitude"trunk-feeder"route network planning method based on combined clustering,with the layout of takeoff and landing sites and actual operational traffic volumes as input conditions.Initially,the optimal orientation of trunk route was determined using principal component analysis(PCA)and numerical optimization,respectively.Meanwhile,the quality of the clustering results was evaluated using a Gaussian distribution model and a geometric similarity model,and four differentiated route network clustering schemes were constructed.Secondly,a comprehensive evaluation system encompassing the total route network length,construction costs,and route intersection points was established to assess the performance of the four clustering methods.Finally,the feasibility and effectiveness of the method were validated using Shaoxing City as a case study.The results show that,compared with the initial planning scheme,the total construction cost of the route network decreases by 21.39%and the number of route intersections decreases by 34.41%under the high-density scenario.Under the medium-density scenario,the total construction cost decreases by 36.44%and the number of route intersections decreases by 16.92%.The findings indicate that the proposed"principal component analysis-geometric similarity"combined clustering method adopted in this pa-per can significantly improve the safety and cost-effectiveness of low-altitude operations,and can provide theoretical foundations and technical support for the scientific planning of urban low-altitude traffic systems.

韩鹏;曹露瑶;曾曙;罗锦发;赵嶷飞

中国民航大学 空中交通管理学院,天津 300300中国民航大学 空中交通管理学院,天津 300300||中国民用航空飞行学院 民航飞行技术与飞行安全重点实验室,四川 广汉 618307中国民航大学 空中交通管理学院,天津 300300中国民航大学 空中交通管理学院,天津 300300中国民航大学 空中交通管理学院,天津 300300

航空航天

城市空中交通低空航路网络规划聚类无人机

urban air mobilitylow-altitude air routenetwork planninghierarchical clusteringunmanned aerial vehicle

《华南理工大学学报(自然科学版)》 2026 (8)

96-109,14

国家自然科学基金项目(52572390)民航飞行技术与飞行安全重点实验室开放资助项目(FZ2021KF17)中国民航局民航安全能力建设项目(20230010) Supported by the National Natural Science Foundation of China(52572390)

10.12141/j.issn.1000-565X.250320

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