TY - GEN
T1 - Design and Implementation of Lightweight Communication Middleware for Aircraft Embedded Real-Time System Based on Standard DDS
AU - Ma, Xianlong
AU - Zheng, Tianyu
AU - Chu, Yong
AU - Tian, Weihang
AU - Zhang, Qian
AU - Meng, Zhongjie
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - As the core bridge between the embedded Real-time Operating System (RTOS) and applications, communication middleware realizes software and hardware decoupling and component interoperability through standardized interfaces, which is a key technology supporting the evolution of 'softwaredefined aircraft'. Existing research focuses on collaborative simulation communication optimization, fault tolerance mechanism and lightweight design, and lacks a dedicated architecture that strictly follows the Data Distribution Service (DDS) specifications, resulting in limited cross-platform portability and interoperability. In response to the above problems, this study proposes an innovative communication middleware architecture based on the international OMG DDS standard (Version 1.4), which is specially designed for aircraft embedded RTOS environment. Experimental verification shows that this architecture has strong stability in a typical aircraft embedded platform (SliyxOS/Linux), end-to-end communication latency <20 μ s, and supports 10 MB/ms data transmission. This study provides a high-performance communication infrastructure for software-defined aircraft that meets international standards.
AB - As the core bridge between the embedded Real-time Operating System (RTOS) and applications, communication middleware realizes software and hardware decoupling and component interoperability through standardized interfaces, which is a key technology supporting the evolution of 'softwaredefined aircraft'. Existing research focuses on collaborative simulation communication optimization, fault tolerance mechanism and lightweight design, and lacks a dedicated architecture that strictly follows the Data Distribution Service (DDS) specifications, resulting in limited cross-platform portability and interoperability. In response to the above problems, this study proposes an innovative communication middleware architecture based on the international OMG DDS standard (Version 1.4), which is specially designed for aircraft embedded RTOS environment. Experimental verification shows that this architecture has strong stability in a typical aircraft embedded platform (SliyxOS/Linux), end-to-end communication latency <20 μ s, and supports 10 MB/ms data transmission. This study provides a high-performance communication infrastructure for software-defined aircraft that meets international standards.
KW - Communication middleware
KW - data distribution service (DDS)
KW - embedded real-time operating system
KW - lightweight architecture
KW - microsecond delay
UR - https://www.scopus.com/pages/publications/105044279375
U2 - 10.1109/CCAT68690.2025.00021
DO - 10.1109/CCAT68690.2025.00021
M3 - 会议稿件
AN - SCOPUS:105044279375
T3 - Proceedings - 4th International Conference on Computer Applications Technology, CCAT 2025
SP - 85
EP - 89
BT - Proceedings - 4th International Conference on Computer Applications Technology, CCAT 2025
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 4th International Conference on Computer Applications Technology, CCAT 2025
Y2 - 14 November 2025 through 16 November 2025
ER -