TY - GEN
T1 - Research on Open System Architecture of Modular Aircraft Based on Logical-Physical Layered Structure
AU - Zhang, Xinshuai
AU - Cai, Yanfang
AU - Zhao, Tao
AU - Liu, Songyu
AU - Su, Hua
AU - Gong, Chunlin
N1 - Publisher Copyright:
© Beijing HIWING Scientific and Technological Information Institute 2026.
PY - 2026
Y1 - 2026
N2 - An in-depth analysis of the concept, composition, and hierarchical division of the modular aircraft open system architecture provides solid theoretical support for future aircraft system design. First, this paper reviews the application background and development history of open system architecture, emphasizing its key role in improving system flexibility and scalability. Then, by comparing research achievements and practical experiences in foreign open system architecture, it summarizes the main characteristics of international aircraft architectures. Accordingly, this study proposes a hierarchical structure for the modular aircraft open system architecture, consisting of a three-level logical layer and a four-level physical layer. Compared with WOSA, it clarifies the boundary between logical and physical modules, rendering the architecture clearer and easier to disassemble. The application results demonstrate that the proposed hierarchical architecture offers new ideas and methods for increasing the openness of aircraft systems and simplifying simulation testing.
AB - An in-depth analysis of the concept, composition, and hierarchical division of the modular aircraft open system architecture provides solid theoretical support for future aircraft system design. First, this paper reviews the application background and development history of open system architecture, emphasizing its key role in improving system flexibility and scalability. Then, by comparing research achievements and practical experiences in foreign open system architecture, it summarizes the main characteristics of international aircraft architectures. Accordingly, this study proposes a hierarchical structure for the modular aircraft open system architecture, consisting of a three-level logical layer and a four-level physical layer. Compared with WOSA, it clarifies the boundary between logical and physical modules, rendering the architecture clearer and easier to disassemble. The application results demonstrate that the proposed hierarchical architecture offers new ideas and methods for increasing the openness of aircraft systems and simplifying simulation testing.
KW - aircraft
KW - hierarchical division
KW - modularization
KW - open system architecture
UR - https://www.scopus.com/pages/publications/105043916647
U2 - 10.1007/978-981-95-7668-5_44
DO - 10.1007/978-981-95-7668-5_44
M3 - 会议稿件
AN - SCOPUS:105043916647
SN - 9789819576678
T3 - Lecture Notes in Electrical Engineering
SP - 466
EP - 477
BT - Proceedings of 5th 2025 International Conference on Autonomous Unmanned Systems ICAUS - Volume 6
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 -