用6G与大模型提升智能军用车辆的协同决策能力
Leveraging Edge Intelligence and LLMs to Advance 6G-Enabled Internet of Automated Defense Vehicles
- 结合6G通信与预训练大模型实现军用车辆实时协同决策
- 支持任务关键场景下低时延、高可靠的车辆间信息交互
- 适合关注军事智能化与边缘智能融合的科研人员
人工智能及其子领域深度学习深刻影响了多个领域,包括自动驾驶。在军事场景中集成自动驾驶可减少人员伤亡,实现危险环境中的精准安全任务执行,并提供可靠后勤支持,避免疲劳导致的错误。然而,仅依赖自动驾驶需具备适应性强且最优的决策模型。在任务关键场景中存在大量互联的自动驾驶车辆时,超可靠低时延通信(URLLC)对于确保无缝协同、实时数据交换和对动态驾驶环境的即时响应至关重要。6G的出现通过增强智能军用车辆互联网(IoADV)概念,强化了军事物联网(IoMDT)中的连通性,支持实时数据交换、先进导航与通过车辆交互提升的安全特性。同时,该领域另一关键进展是利用预训练生成型大语言模型(LLMs)优化自动驾驶的决策与通信。本文探讨了这些技术在关键防御应用中实现潜力的机遇与挑战,尤其聚焦于IoADV的发展及其对自主军事行动的增强作用。
原文摘要 · Abstract (English)
The evolution of Artificial Intelligence (AI) and its subset Deep Learning (DL), has profoundly impacted numerous domains, including autonomous driving. The integration of autonomous driving in military settings reduces human casualties and enables precise and safe execution of missions in hazardous environments while allowing for reliable logistics support without the risks associated with fatigue-related errors. However, relying on autonomous driving solely requires an advanced decision-making model that is adaptable and optimum in any situation. Considering the presence of numerous interconnected autonomous vehicles in mission-critical scenarios, Ultra-Reliable Low Latency Communication (URLLC) is vital for ensuring seamless coordination, real-time data exchange, and instantaneous response to dynamic driving environments. The advent of 6G strengthens the Internet of Automated Defense Vehicles (IoADV) concept within the realm of Internet of Military Defense Things (IoMDT) by enabling robust connectivity, crucial for real-time data exchange, advanced navigation, and enhanced safety features through IoADV interactions. On the other hand, a critical advancement in this space is using pre-trained Generative Large Language Models (LLMs) for decision-making and communication optimization for autonomous driving. Hence, this work presents opportunities and challenges with a vision of realizing the full potential of these technologies in critical defense applications, especially through the advancement of IoADV and its role in enhancing autonomous military operations.
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