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基于动态分簇与事件驱动的异构弹群鲁棒低负载目标分配方法(飞行器协同作战专栏)

姬家欢1,王铮2,张永华2,吴松森2,韦亚利2,王晓田3,宁昕3,陈占胜4   

  1. 1. 西北工业大学无人系统技术研究院
    2. 西北工业大学无人机系统技术研究院
    3. 西北工业大学
    4. 上海卫星工程研究所
  • 收稿日期:2025-11-26 修回日期:2026-04-02 出版日期:2026-04-09 发布日期:2026-04-09
  • 通讯作者: 王铮
  • 基金资助:
    国家自然科学基金

A Robust and Low-Load Target Assignment Method for Heterogeneous Missile Swarms Based on Dynamic Clustering and Event-Driven Mechanisms

  • Received:2025-11-26 Revised:2026-04-02 Online:2026-04-09 Published:2026-04-09

摘要: 针对异构弹群协同拦截高机动无人机集群的实时目标分配问题,提出了一种基于事件驱动的弹群动态分簇目标分配算法。首先综合考虑目标机动能力强、导弹通信半径有限等核心问题,建立了“事件驱动+动态分簇+多层次拍卖与冲突消解”的一体化架构;其中,针对目标机动能力强、分布动态变化等特点,提出基于集群特征的新型事件驱动机制,仅在拦截态势显著变化时触发重分配,规避周期性重分配引发的通信冗余与调度迟滞;针对通信半径有限约束,提出基于K-means++聚类的自适应动态分簇机制,并对应设计多层次拍卖与冲突消解机制,从而实现面向非均衡“多对一”场景的低负载、高鲁棒协同目标分配。仿真结果表明,该方法在显著降低通信负载和分配触发频次的同时,终端拦截性能优于基准分布式在线分配算法并接近集中式在线分配算法水平。

关键词: 异构弹群, 事件驱动, 动态分簇, 非均衡分配, 目标分配

Abstract: To address the real-time target assignment problem in heterogeneous missile swarms cooperatively intercepting highly maneuverable UAV swarms, an event-driven, dynamic-clustering-based target assignment algorithm is proposed. By jointly accounting for key factors such as strong target maneuverability and the limited communication range of missiles, an integrated framework combining “event-driven control, dynamic clustering, and multi-level auction with conflict resolution” is established. Within this framework, to cope with highly maneuverable targets and their dynamically changing spatial distribution, a novel swarm-feature-based event-triggering mechanism is designed, which initiates reassignment only when the interception scenario changes significantly, thereby avoiding the communication redundancy and scheduling latency caused by periodic reassignment. To address the constraint of limited communication range, an adaptive dynamic clustering scheme based on K-means++ is introduced, together with a corresponding multi-level auction and conflict-resolution mechanism, enabling low-overhead and highly robust cooperative target assignment in unbalanced many-to-one engagement scenarios. Simulation results demonstrate that the proposed method markedly reduces communication load and reassignment frequency, while achieving terminal-phase interception performance superior to that of benchmark distributed online assignment methods and close to that of a centralized online assignment approach.

Key words: heterogeneous missile swarms, event-driven, dynamic clustering, unbalanced assignment, target assignment

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