TY - GEN
T1 - Research on Autonomous Decision Method of Multi-unmanned System Based on Hierarchical Behavior Tree
AU - He, Yan Zhang
AU - Li, Dong Guang
AU - Pan, Jian
AU - Wang, Yue
AU - Xue, Chao
N1 - Publisher Copyright:
© Beijing HIWING Scientific and Technological Information Institute 2026.
PY - 2026
Y1 - 2026
N2 - To address the issues of slow and inflexible collaborative decision-making among multiple unmanned platforms in future cross-domain cooperative combat scenarios, this paper proposes an autonomous decision-making method based on hierarchical behavior trees, constructing a three-layer behavior tree model spanning “mission-cluster-platform”. By customizing multiple types of nodes, it enables top-down decomposition, dynamic allocation, and online on-the-spot adjustment of complex tasks. In a cross-domain anti-submarine search simulation experiment involving multiple unmanned platforms, it has achieved fully autonomous collaborative combat capable of commanding no less than 50 heterogeneous unmanned platforms of three types, with an online generation delay of platform action instructions of only 250 ms. The hierarchical behavior tree architecture proposed in this paper supports node reuse and flexible configuration, significantly reducing command load and providing scalable technical support for fully leveraging the multi-domain dynamic complementary advantages of multi-unmanned cluster systems.
AB - To address the issues of slow and inflexible collaborative decision-making among multiple unmanned platforms in future cross-domain cooperative combat scenarios, this paper proposes an autonomous decision-making method based on hierarchical behavior trees, constructing a three-layer behavior tree model spanning “mission-cluster-platform”. By customizing multiple types of nodes, it enables top-down decomposition, dynamic allocation, and online on-the-spot adjustment of complex tasks. In a cross-domain anti-submarine search simulation experiment involving multiple unmanned platforms, it has achieved fully autonomous collaborative combat capable of commanding no less than 50 heterogeneous unmanned platforms of three types, with an online generation delay of platform action instructions of only 250 ms. The hierarchical behavior tree architecture proposed in this paper supports node reuse and flexible configuration, significantly reducing command load and providing scalable technical support for fully leveraging the multi-domain dynamic complementary advantages of multi-unmanned cluster systems.
KW - Autonomous decision-making
KW - Hierarchical behavior tree
KW - Multi-unmanned system
UR - https://www.scopus.com/pages/publications/105040332894
U2 - 10.1007/978-981-95-7648-7_11
DO - 10.1007/978-981-95-7648-7_11
M3 - Conference contribution
AN - SCOPUS:105040332894
SN - 9789819576470
T3 - Lecture Notes in Electrical Engineering
SP - 124
EP - 132
BT - Proceedings of 5th 2025 International Conference on Autonomous Unmanned Systems (ICAUS)
A2 - Xie, Shaorong
A2 - Niu, Yifeng
A2 - Fu, Wenxing
A2 - Qu, Yi
PB - Springer Science and Business Media Deutschland GmbH
T2 - 5th International Conference on Autonomous Unmanned Systems, ICAUS 2025
Y2 - 17 October 2025 through 19 October 2025
ER -