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Conference Tracks 专题论坛


Track 5: Non-Terrestrial Integrated Sensing, Communication, and Computing Networks | 非陆地感通算一体化网络

Organizers / 组织者信息
Tang Rui (唐睿)
School of Electronic and Information Engineering, China West Normal University (西华师范大学电子信息工程学院)
Associate Professor (副教授)
Hu Bintao (胡斌涛)
School of IoT, Xi'an Jiaotong-Liverpool University (西交利物浦大学物联网学院)
Assistant Professor (助理教授)
Du Pengfei (杜鹏飞)
School of Aerospace and Intelligent Equipment, Xihua University (西华大学航空航天与智能装备学院)
Associate Professor (副教授)
Xie Wenwu (谢文武)
School of Information Science and Engineering, Hunan Institute of Science and Technology (湖南理工学院信息科学与工程学院)
Associate Professor (副教授)
Guan Yingying (管莹莹)
School of Electronic Information Engineering, Wuxi University (无锡学院电子信息工程学院)
Lecturer (讲师)
Chen Mingzi (陈铭子)
School of Information Science and Technology, Nantong University (南通大学信息科学技术学院)
Lecturer (讲师)
Chen Zhen (陈真)
School of Cyber Science and Technology, Jinan University (暨南大学网络空间安全学院)
Professor (教授)
Abstract / 论坛简介

English: Non-Terrestrial Networks (NTN) are expected to become a critical enabler for emergency response, offshore operations, and IoT in remote areas. These applications require not only wide-area reliable connectivity, but also real-time sensing and computing. Looking ahead to 6G, sensing, communication, and computing will be deeply integrated and mutually beneficial, forming a new integrated paradigm that enables space–air–ground–sea systems to achieve Integrated Sensing, Communication, and Computing (ISCC) in highly dynamic, wide-coverage non-terrestrial scenarios. This forum focuses on non-terrestrial ISCC networks, covering network architectures for typical scenarios, enabling technologies such as multi-antenna and reconfigurable intelligent surfaces, 6G enhancement means such as physical-layer security and semantic communication, as well as wireless channel modeling, statistical performance analysis, multi-domain joint allocation of spectrum, power, beam, computing, and trajectory, end-to-end latency, energy consumption and fairness optimization, and AI-empowered network and optimization design. It aims to build theoretical frameworks and technical systems to improve resource efficiency and release synergistic gains. The relevant achievements will serve emergency communications, smart ocean, precision agriculture, environmental monitoring, the low-altitude economy, digital twins, and polar scientific research, and provide important support for the building of a cyberpower, Digital China, and a maritime power, as well as for national security and the layout of space–air–ground–sea integrated information infrastructure.

中文: 非陆地网络(Non-Terrestrial Networks, NTN)有望成为应急救灾、远海作业与偏远地区物联网的关键支撑。这些应用不仅需要广域可靠连接,更要求实时感知与计算。展望6G,感知、通信与计算将深度融合、彼此增益,形成一体化新范式,使空天地海系统在高动态、广覆盖的非陆地场景中实现通感算一体化(Integrated Sensing, Communication, and Computing, ISCC)。本论坛聚焦非陆地ISCC网络,涵盖面向典型场景的网络架构,多天线、可重构智能超表面等使能技术,物理层安全与语义通信等6G增强手段,以及无线信道建模、统计性能分析、频谱功率波束算力与航迹的多域联合调配、端到端时延能耗与公平性优化,以及人工智能赋能的网络与优化设计,旨在构建理论框架与技术体系,提升资源效率、释放协同增益。相关成果将服务于应急通信、智慧海洋、精准农业、环境监测、低空经济、数字孪生与极地科考等场景,并为网络强国、数字中国与海洋强国建设,为国家安全保障与空天地海一体化信息基础设施布局提供重要支撑。

Topics / 主题范围
  • ISCC network architectures for scenarios such as emergency response, offshore, remote IoT, and V2X / 面向应急、远海、偏远物联网、车联网等应用场景的ISCC网络架构
  • Multi-antenna technologies (MIMO, reconfigurable intelligent surfaces / intelligent reflecting surfaces, fluid/movable antennas) empowered ISCC networks / 多输入多输出、可重构智能超表面/智能反射面、流体天线/可移动天线等多天线技术赋能的ISCC网络
  • Millimeter-wave and terahertz technologies for ISCC / 用于ISCC的毫米波和太赫兹技术
  • Wireless channel modeling and statistical performance analysis / 无线信道建模和统计性能分析
  • Multi-domain joint resource allocation (spectrum division, power control, beamforming, task partition, computing partition/scheduling, trajectory design, etc.) / 多域联合资源分配,如频谱划分、功率控制、波束赋形、任务分割、算力划分/调度、航迹设计等
  • End-to-end latency, energy consumption, and user-fairness optimization, and performance trade-offs among subsystems / 网络端到端时延、能耗、用户公平性等性能优化以及不同子系统间性能折衷
  • AI-empowered network and optimization design / 人工智能赋能网络和优化设计
  • Sensing, positioning, and cooperative sensing in ISCC networks (target detection and tracking, localization and navigation, etc.) / ISCC网络中的感知、定位与协同感知技术,如目标检测与跟踪、定位与导航等
  • Integrated communication and multimodal sensing technologies / 集成通信与多模态感知技术
  • Information security and privacy issues in ISCC / ISCC的信息安全与隐私问题
  • Target- and semantics-oriented ISCC / 面向目标与语义的ISCC
  • WiFi positioning and target recognition technologies / WiFi定位与目标识别技术
Invited Speakers / 拟邀请报告人
Chen Zhen (陈真)
School of Cyber Science and Technology, Jinan University (暨南大学网络空间安全学院)
Du Jianbo (杜剑波)
School of Communication and Information Engineering, Xi'an University of Posts and Telecommunications (西安邮电大学通信与信息工程学院)

© 2026 Workshop on Electronics Communication Engineering (WECE 2026)