可扩展性
计算机科学
调度(生产过程)
分布式计算
钥匙(锁)
建筑
可靠性(半导体)
在线和离线
分类学(生物学)
系统体系结构
桥接(联网)
碰撞
工作(物理)
高效能源利用
分层数据库模型
人工智能
仿形(计算机编程)
作者
Junqi Li,Junqi Li,Junjie Li,Junjie Li,Jian Zhang,Wenyue Meng
出处
期刊:Drones
[Multidisciplinary Digital Publishing Institute]
日期:2025-12-26
卷期号:10 (1): 11-11
被引量:1
标识
DOI:10.3390/drones10010011
摘要
Collaborative multi-UAV swarms are central to many missions. This review covers the most recent two years. It organizes the literature with a scenario-aligned taxonomy. The taxonomy has 12 cells (Path/Distribution/Coverage × offline/online × static/dynamic). Nine cells are well populated and analyzed. For each, representative techniques, reported limitations, and scenario-appropriate use are summarized. Cross-scenario trade-offs are made explicit. Key examples include scalability vs. energy efficiency and centralized vs. decentralized (hybrid) architectures. The review also links offline pre-planning to online execution through architecture choices, digital-twin validation, and safety-aware collision avoidance in cluttered airspace. Unlike prior algorithm-centric or bibliometric surveys, this work applies a scenario-conditioned taxonomy, ties best-suited method families to each populated cell, and surfaces reported limitations alongside trade-offs. The result is deployment-oriented guidance that maps methods to mission context. Finally, five near-term priorities are highlighted: (i) compute-aware real-time adaptivity on resource-constrained platforms; (ii) scalable multi-objective scheduling with coupled motion and cooperative control; (iii) bandwidth-aware, conflict-resilient intra-swarm communication with reliability guarantees; (iv) certifiable planning for dense urban low-altitude corridors; and (v) energy-aware, hierarchical planners that couple offline pre-planning with online replanning.
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