首页 >

临近空间长航时飞行器协同控制技术与应用

龚玮诚,张一飞,陈天,祝明   

  1. 北京航空航天大学
  • 收稿日期:2026-01-07 修回日期:2026-06-11 出版日期:2026-06-16 发布日期:2026-06-16
  • 通讯作者: 陈天
  • 基金资助:
    国家自然科学基金项目;教育部学科突破先导项目

Cooperative Control Technology and Applications for Near-Space Long-Endurance Aircraft

  • Received:2026-01-07 Revised:2026-06-11 Online:2026-06-16 Published:2026-06-16
  • Supported by:
    National Natural Science Foundation of China;Fundamental and Interdisciplinary Disciplines Breakthrough Plan of the Ministry of Education of China

摘要: 临近空间长航时飞行器集群在遥感监测、通信覆盖等领域极具应用价值,为提升其在临近空间复杂环境下的任务效能,亟需突破面向动态环境的集群协同控制关键技术。对临近空间长航时飞行器集群协同控制技术与应用的研究现状、应用范式、关键技术、主要挑战及发展方向进行了系统梳理与综述。首先,分析了临近空间长航时飞行器的平台特性,阐述了广域集群协同与跨域体系协同两类典型应用范式。其次,从协同自组网、任务决策分配、协同航迹规划与控制、跨域协同控制等方面,综述了关键技术的研究进展。然后,归纳了当前研究在时空大跨度环境适应、多目标多约束优化、跨域信息融合及网络安全等方面面临的核心挑战。最后,从跨域协同应用范式体系化、技术体系通用化以及决策控制智能化等方面,展望了临近空间飞行器集群协同控制技术的发展方向。

关键词: 临近空间长航时飞行器, 高空平台, 集群智能, 协同控制, 跨域协同

Abstract: Near-space long-endurance aircraft clusters hold significant application value in fields such as remote sensing monitoring and communication coverage. To enhance their mission effectiveness in the complex near-space environment, it is essential to advance key technologies for cluster cooperative control in dynamic settings. This study provides a systematic review and summary of the research status, application paradigms, key technologies, major challenges, and development directions regarding cooperative control technologies and applications for near-space long-endurance aircraft clusters. First, the platform characteristics of near-space long-endurance aircraft are analyzed, and two typical application paradigms—large-scale cluster cooperation and cross-domain system-level collaboration—are elaborated. Second, research progress in key technologies is reviewed, including cooperative self-organizing networking, mission decision-making and allocation, cooperative trajectory planning and control, and cross-domain cooperative control. Next, core challenges currently faced by research are summarized, covering adaptation to spatiotemporally large-span environments, multi-objective and multi-constraint optimization, cross-domain information fusion, and network security. Finally, future development directions of cooperative control technologies for near-space aircraft clusters are discussed from the perspectives of systematizing cross-domain cooperative application paradigms, developing generalizable technical system, and advancing intelligent decision-making and control.

Key words: near-space long-endurance aircraft, high-altitude platform, swarm intelligence, cooperative control, cross-domain cooperation

中图分类号: