
2026年航空航天电子信息与智能系统国际学术会议(AEIIS 2026)于2026年5月15日至17日在中国郑州顺利召开。本届会议由郑州航空工业管理学院主办,郑州航空工业管理学院电子信息学院、郑州大学电气与信息工程学院、中原工学院人工智能学院、华北水利水电大学电子工程学院、郑州升达经贸管理学院信息工程学院联合承办,并得到河南省通用航空技术重点实验室、航空航天电子信息技术河南省协同创新中心、河南省航空航天学会、河南省人工智能学会、蓝天实验室、河南世纪国科空间技术应用有限公司、河南世纪空间技术应用有限公司等单位的鼎力协办。
The 2026 International Conference on Aerospace Electronics Information and Intelligent Systems (AEIIS 2026) was successfully held from May 15 to 17, 2026, in Zhengzhou, China. The conference was hosted by Zhengzhou University of Aeronautics, and co-organized by the School of Electronic and Information Engineering (Zhengzhou University of Aeronautics), the School of Electrical and Information Engineering (Zhengzhou University), the School of Artificial Intelligence (Zhongyuan University of Technology), the School of Electronic Engineering (North China University of Water Resources and Electric Power), and the School of Information Engineering (Zhengzhou Shengda University). It was also strongly supported by the Henan Provincial Key Laboratory of General Aviation Technology, the Henan Provincial Collaborative Innovation Center for Aerospace Electronic Information Technology, the Henan Society of Aeronautics and Astronautics, the Henan Society of Artificial Intelligence, the Lantian Laboratory, Henan Century Guoke Space Technology Application Co., Ltd., and Henan Century Space Technology Application Co., Ltd.
本次会议以"航空航天电子信息系统"与"光电感知与成像技术"为核心议题,汇聚了来自全国高校、科研院所及产业界的百余名专家学者,围绕飞行器智能感知、航空航天大模型、新一代航电系统、空天地一体化网络、无人系统导航与控制等前沿领域展开深度交流,搭建了一个多元而富有活力的国际学术对话平台。
Centered on the core themes of "Aerospace Electronic Information Systems" and "Optoelectronic Sensing and Imaging Technology," the conference brought together more than one hundred experts and scholars from universities, research institutions, and industry across the country. In-depth discussions were conducted on cutting-edge topics such as aircraft intelligent perception, aerospace foundational models, next-generation avionics systems, space-air-ground integrated networks, and navigation and control of unmanned systems, creating a diverse and vibrant platform for international academic dialogue.
大会为期三天,议程紧凑而丰富,涵盖大会开幕、主旨报告、专题分会场报告及海报展示等环节。5月16日为主会议日,设四场主旨报告和两大专题分会场,集中呈现了航空航天电子信息与智能系统领域的最新研究成果与技术进展。
Spanning three days, the conference featured a well-organized and comprehensive program, including an opening ceremony, keynote speeches, special session reports, and poster presentations. May 16 served as the main conference day, with four keynote speeches and two parallel special sessions, showcasing the latest research outcomes and technological advances in aerospace electronic information and intelligent systems.

5月16日上午9时,大会在郑州航空工业管理学院东校区图书馆第一报告厅正式拉开帷幕。大会主席、郑州航空工业管理学院刘兆瑜教授在开幕致辞中向来自全国各地的专家学者表示热烈欢迎。他指出,人工智能与自主系统正引领航空航天电子信息的深刻变革,AEIIS 2026旨在为学界和业界搭建一个开放、包容、高水平的学术交流平台,共同探讨该领域面临的机遇与挑战。华中科技大学李仁府教授、南京航空航天大学胡俊辉教授等大会主席团成员亦出席了开幕式。
At 9:00 AM on May 16, the conference officially commenced at Library Lecture Hall 1, East Campus of Zhengzhou University of Aeronautics. General Chair Prof. Zhaoyu Liu of Zhengzhou University of Aeronautics extended a warm welcome to all attending experts and scholars in his opening address. He noted that artificial intelligence and autonomous systems are driving profound transformations in aerospace electronic information, and that AEIIS 2026 was designed to provide an open, inclusive, and high-level academic platform for academia and industry to jointly explore the opportunities and challenges facing this field. General Co-Chairs Prof. Renfu Li of Huazhong University of Science and Technology and Prof. Junhui Hu of Nanjing University of Aeronautics and Astronautics were also in attendance.

郭兰图正高级工程师的报告系统梳理了天基电磁环境感知星座的发展演进脉络,深入剖析了星载电磁感知载荷、星座组网协同探测、电磁频谱态势生成等核心关键技术。报告结合国内外最新研究进展,展望了天基电磁感知体系在空间安全监测、频谱管理及电磁对抗等领域的重要应用前景,引起了参会人员的广泛关注和热烈讨论。
Senior Engineer Lantu Guo's speech systematically traced the evolution of space-based electromagnetic environment sensing constellations, providing an in-depth analysis of core technologies such as spaceborne electromagnetic sensing payloads, cooperative constellation networking for detection, and electromagnetic spectrum situational awareness generation. Drawing on the latest domestic and international advances, the presentation outlined promising application prospects in space security monitoring, spectrum management, and electromagnetic countermeasures, attracting wide attention and lively discussion among the participants.

中国工程院院士、郑州航空工业管理学院校长邓中亮教授以《时空智能与卫星互联网》为题,分享了其团队在无线网络定位与时空智能融合方面的前沿探索。报告从广域高精度定位的理论框架出发,系统阐释了卫星互联网背景下时空信息感知、传输与智能服务的融合架构,展示了相关成果在远海域工程建设、精准位置服务等领域的应用实践,为与会者呈现了一幅时空智能赋能未来网络的技术蓝图。
Academician of the Chinese Academy of Engineering and President of Zhengzhou University of Aeronautics, Prof. Zhongliang Deng, delivered a speech titled "Spatial-temporal Intelligence and Satellite Internet," sharing his team's pioneering exploration in wireless network positioning and spatiotemporal intelligent fusion. Starting from the theoretical framework of wide-area high-precision positioning, the talk systematically elucidated the fusion architecture of spatiotemporal information sensing, transmission, and intelligent services in the context of satellite internet, demonstrating practical applications in remote maritime engineering construction and precision location-based services, and presenting attendees with a technical blueprint for spatiotemporal-intelligence-empowered future networks.

北京航空航天大学赵子龙教授从固体力学与结构拓扑优化的交叉视角切入,介绍了跨学科计算形态生成方法在复杂系统结构找形中的创新应用。报告将生物力学原理与飞行器结构设计相结合,展示了形态生成算法在轻量化结构设计、多场耦合优化等方面的卓越表现,充分体现了跨学科方法在航空航天工程中的巨大潜力。
Prof. Zi-Long Zhao of Beihang University approached the topic from the interdisciplinary perspective of solid mechanics and structural topology optimization, introducing innovative applications of transdisciplinary computational morphogenesis in structural form-finding of complex systems. The presentation combined biomechanical principles with aircraft structural design, demonstrating the outstanding performance of morphogenesis algorithms in lightweight structural design and multi-physics coupling optimization, fully highlighting the immense potential of transdisciplinary approaches in aerospace engineering.

哈尔滨工业大学张刚教授围绕快速响应空间任务需求,系统介绍了轨道动力学建模、多约束轨迹优化与不确定性分析等关键技术。报告结合探月工程嫦娥四号中继星等实际型号任务经验,深入探讨了轨道优化设计在应急响应、在轨服务等场景中的工程化应用,展现了我国在航天器轨道动力学领域的深厚积累与前沿突破。
Prof. Gang Zhang of Harbin Institute of Technology focused on the requirements of responsive space missions, systematically introducing key technologies such as orbital dynamics modeling, multi-constraint trajectory optimization, and uncertainty analysis. Drawing on practical mission experience including the Chang'e-4 relay satellite, the presentation delved into the engineering applications of orbit optimization design in scenarios such as emergency response and on-orbit servicing, demonstrating China's deep expertise and frontier breakthroughs in spacecraft orbital dynamics.
四场主旨报告深入浅出,既有深厚的理论积淀,又有丰富的工程实践支撑,充分展现了航空航天电子信息与智能系统领域的前沿创新思维,激发了与会者的创造性思考与学术热情,学术氛围浓厚而热烈。
The four keynote speeches were both profound and accessible, underpinned by solid theoretical foundations and extensive engineering practice. They vividly demonstrated the frontier innovative thinking in aerospace electronic information and intelligent systems, inspiring creative reflection and academic enthusiasm among the attendees in a rich and dynamic scholarly atmosphere.
主旨报告环节结束后,两场专题分会场于5月16日下午同步进行。分会场一"无人系统导航、制导与控制"在图书馆第二报告厅举行,来自郑州航空工业管理学院、国防科技大学等高校的六位学者依次登台,围绕多AGV任务分配、四旋翼无人机组合导航、无人飞行器协同引导、编队避障算法、航空精密锻件智能调度以及无人机分层路径规划框架等前沿课题进行了精彩报告。
Following the keynote plenary, two parallel special sessions were held on the afternoon of May 16. Session 1 — "Navigation, Guidance, and Control of Unmanned Systems" — took place in Library Lecture Hall 2, where six scholars from Zhengzhou University of Aeronautics, the National University of Defense Technology, and other institutions delivered excellent presentations on cutting-edge topics including multi-AGV task allocation, quadrotor UAV integrated navigation, cooperative guidance of unmanned aerial vehicles, formation obstacle avoidance algorithms, intelligent scheduling of aerospace precision forgings, and hierarchical path planning frameworks for UAVs.
分会场二"多模态感知与智能信息处理"在图书馆第三报告厅同步展开,四位报告人分别来自郑州航空工业管理学院与南京理工大学,围绕多目标跟踪框架、电火工品可靠性评估、遥感图像旋转目标检测以及非合作空间目标6D位姿估计等研究方向分享最新成果。两场分会场均气氛热烈,与会者积极提问、深入交流,充分体现了青年科研力量的蓬勃活力。
Session 2 — "Multimodal Perception and Intelligent Information Processing" — ran concurrently in Library Lecture Hall 3, where four presenters from Zhengzhou University of Aeronautics and Nanjing University of Science and Technology shared their latest findings on multi-object tracking frameworks, electro-explosive device reliability assessment, remote sensing image rotation target detection, and model-free 6D pose estimation for non-cooperative space targets. Both sessions were marked by a lively atmosphere, with attendees actively posing questions and engaging in in-depth exchanges, fully reflecting the vigorous energy of young researchers.

会议同期举办了海报展示环节。来自多所高校的研究生和青年学者通过精心设计的海报,集中展示了各自在航空航天电子信息、智能感知、自主系统等领域的最新研究进展。海报展区人流不断,学术交流气氛浓厚,为青年研究者提供了展示学术风采和拓展合作网络的宝贵机会。
A poster presentation session was held concurrently with the conference. Graduate students and young scholars from multiple universities showcased their latest research progress in aerospace electronic information, intelligent perception, autonomous systems, and related fields through carefully designed posters. The poster area remained bustling with visitors, creating a rich atmosphere of academic exchange and providing young researchers with a valuable opportunity to present their scholarly work and expand collaborative networks.
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AEIIS 2026的成功举办,不仅为航空航天电子信息与智能系统领域的专家学者提供了一个高水平的学术交流平台,也为推动该领域的前沿技术创新与产学研深度融合注入了新的活力。会议期间,与会代表围绕人工智能赋能航空航天、新一代电子信息架构及智能自主系统等方向展开了富有成效的对话,进一步加强了国内外学术界的交流与合作。让我们共同期待AEIIS系列会议的持续举办,期待来年再度相聚,共同谱写航空航天电子信息与智能系统领域的学术新篇章。
The successful convening of AEIIS 2026 not only provided a high-level academic exchange platform for experts and scholars in aerospace electronic information and intelligent systems, but also injected fresh vitality into advancing frontier technological innovation and deepening industry-academia-research integration in this field. Throughout the conference, fruitful dialogues were conducted on topics such as AI-empowered aerospace, next-generation electronic information architectures, and intelligent autonomous systems, further strengthening academic exchange and collaboration both domestically and internationally. We look forward to the continued success of the AEIIS conference series and to reconvening in the coming year, jointly writing a new chapter in the academic advancement of aerospace electronic information and intelligent systems.