提出云雾协同架构,提升无人船实时避碰与分类能力
Leveraging Cloud-Fog Automation for Autonomous Collision Detection and Classification in Intelligent Unmanned Surface Vehicles
- 构建云-边-物三层架构,分层处理感知与决策
- 实现86%分类准确率,显著降低延迟
- 适合智能船舶、海上自动驾驶系统研发者
工业网络物理系统(ICPS)是推动海事自主化的基础,尤其在无人水面艇(USV)领域。然而,车载计算资源限制和通信延迟严重制约了实时数据处理、分析与预测建模,影响海事ICPS的可扩展性与响应速度。为此,我们提出一种面向海事ICPS的分布式云-雾-物联网架构,借鉴近期提出的云雾自动化设计原则。该架构包含三层:云层负责集中与分布式数据聚合、高级分析及未来模型优化;边缘层执行本地化人工智能驱动的处理与决策;物联网层则负责低延迟传感器数据采集。实验表明,相较于传统方法,本方案在计算效率、响应速度与可扩展性方面均有提升,分类准确率达86%,延迟性能显著改善。通过采用云雾自动化,有效解决了海事ICPS中低延迟处理与可扩展性难题。本工作提供了一种实用、模块化且可扩展的框架,有助于推进智能USV在未来的鲁棒自主与智能决策能力。
原文摘要 · Abstract (English)
Industrial Cyber-Physical Systems (ICPS) technologies are foundational in driving maritime autonomy, particularly for Unmanned Surface Vehicles (USVs). However, onboard computational constraints and communication latency significantly restrict real-time data processing, analysis, and predictive modeling, hence limiting the scalability and responsiveness of maritime ICPS. To overcome these challenges, we propose a distributed Cloud-Edge-IoT architecture tailored for maritime ICPS by leveraging design principles from the recently proposed Cloud-Fog Automation paradigm. Our proposed architecture comprises three hierarchical layers: a Cloud Layer for centralized and decentralized data aggregation, advanced analytics, and future model refinement; an Edge Layer that executes localized AI-driven processing and decision-making; and an IoT Layer responsible for low-latency sensor data acquisition. Our experimental results demonstrated improvements in computational efficiency, responsiveness, and scalability. When compared with our conventional approaches, we achieved a classification accuracy of 86\%, with an improved latency performance. By adopting Cloud-Fog Automation, we address the low-latency processing constraints and scalability challenges in maritime ICPS applications. Our work offers a practical, modular, and scalable framework to advance robust autonomy and AI-driven decision-making and autonomy for intelligent USVs in future maritime ICPS.
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