【CISCE 2025主讲官宣】IEEE Fellow领衔线下报告!

尊敬的各位专家、学者:

非常感谢您对第七届IEEE通信、信息系统与计算机工程国际会议(CISCE 2025)的关注,会议将于2025年5月9-11日中国-广州-广州华工大学城中心酒店召开。会议汇聚众多国内外顶尖专家学者,清华大学 高飞飞教授、英国利兹大学 李慷教授、悉尼大学李永会教授,将分享最前沿的学术成果和深刻的行业洞察。


🔥🔥欢迎各位专家学者参会,与高层次专家学者面对面交流探讨,启迪学术研究新思路!


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Prof. Yonghui Li, ARC Future Fellow, IEEE Fellow

School of Electrical and Information Engineering, University of Sydney, Sydney


Biography: Yonghui Li is now a Professor and Director of Wireless Engineering Laboratory in School of Electrical and Information Engineering, University of Sydney. He is the recipient of the Australian Research Council (ARC)Queen Elizabeth II Fellowship in 2008 and ARC Future Fellowship in 2012. He is an IEEE Fellow and Clarivate Highly cited researcher.

His current research interests are in the area of wireless communications. Professor Li was an editor for IEEE transactions on communications, IEEE transactions on vehicular technology and guest editors for several special issues of IEEE journals, such as IEEE JSAC, IEEE IoT Journals, IEEE Communications Magazine. He received the best paper awards from several conferences. He has published one book, more than 300 papers in premier IEEE journals and more than 200 papers in premier IEEE conferences. His publications have been cited more than 25000 times.


Speech Title: Beyond 5G towards a Super-connected World

Abstract: Connected smart objects, platforms and environments have been identified as the next big technology development, enabling significant society changes and economic growth. The entire physical world will be connected to the Internet, referred to as Internet of Things (IoT). The intelligent IoT network for automatic interaction and processing between objects and environments will become an inherent part of areas such as electricity, transportation, industrial control, utilities management, healthcare, water resources management and mining. Wireless networks are one of the key enabling technologies of the IoT. They are likely to be universally used for last mile connectivity due to their flexibility, scalability and cost effectiveness. The attributes and traffic models of IoT networks are essentially different from those of conventional communication systems, which are designed to transmit voice, data and multimedia. IoT access networks face many unique challenges that cannot be addressed by existing network protocols; these include support for a truly massive number of devices, the transmission of huge volumes of data burst in large-scale networks over limited bandwidth, and the ability to accommodate diverse traffic patterns and quality of service (QoS) requirements. Some IoT applications have much stringent latency and reliability requirements which cannot be accommodated by existing wireless networks. Addressing these challenges requires the development of new wireless access technologies, underlying network protocols, signal processing techniques and security protocols. In this talk, I will present the IoT network development, architecture, key challenges, requirements, potential solutions and recent research progress in this area, particularly in 5G and beyond 5G.

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Prof. Feifei Gao, IEEE Fellow

Department of Automation, Tsinghua University, China


Biography: Feifei Gao (Fellow, IEEE) received the B.Eng. degree from Xi'an Jiaotong University, Xi'an, China in 2002, the M.Sc. degree from McMaster University, Hamilton, ON, Canada in 2004, and the Ph.D. degree from National University of Singapore, Singapore in 2007. Since 2011, he joined the Department of Automation, Tsinghua University, Beijing, China, where he is currently a tenured full professor.  

Prof. Gao's research interests include signal processing for communications, array signal processing, convex optimizations, and artificial intelligence assisted communications. He has authored/coauthored more than 200 refereed IEEE journal papers and more than 150 IEEE conference proceeding papers that are cited more than 18000 times in Google Scholar. Prof. Gao has served as an Editor of IEEE Transactions on Wireless Communications, IEEE Journal of Selected Topics in Signal Processing (Lead Guest Editor), IEEE Transactions on Cognitive Communications and Networking, IEEE Signal Processing Letters (Senior Editor), IEEE Communications Letters (Senior Editor), IEEE Wireless Communications Letters, and China Communications. He has also served as the symposium co-chair for 2019 IEEE Conference on Communications (ICC), 2018 IEEE Vehicular Technology Conference Spring (VTC), 2015 IEEE Conference on Communications (ICC), 2014 IEEE Global Communications Conference (GLOBECOM), 2014 IEEE Vehicular Technology Conference Fall (VTC), as well as Technical Committee Members for more than 50 IEEE conferences.


Speech Title: Key Technologies and Prototype Design for Integrated Sensing and Communications System

Abstract: In the future, millions of base stations (BSs) and billions of users (UEs) will natively build an integrated sensing and communications (ISAC) system, which can utilize intelligent ubiquitous methods to realize the ultimate goal of sensing, i.e., constructing the global mapping from real physical world to digital twin world, while providing communications services at the same time. For this purpose, we conduct a series of theoretical and technical researches on ISAC, in which we decompose the real physical world into static environment, dynamic targets, and various object materials. The ubiquitous static environment occupies the vast majority of the physical world, for which we design static environment reconstruction (SER) scheme to obtain the layout and point cloud information of static buildings. The dynamic targets floating in static environments create the spatiotemporal transition of the physical world, for which we design comprehensive dynamic target sensing (DTS) scheme to detect, estimate, track, image and recognize the dynamic targets in real-time. The object materials enrich the electromagnetic laws of the physical world, for which we develop object material recognition (OMR) scheme to estimate the electromagnetic coefficient of the objects. Finally, based on these theoretical researches, we build an ISAC hardware prototype platform working in millimeter wave frequency band, realizing high-precision SER, DTS, and basic OMR, which provides preliminary verification for building the digital twin for communications networks.

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Prof Kang Li, Chair of Smart Energy Systems

School of Electronic and Electrical Engineering, University of Leeds, UK


Biography: Prof Kang Li holds the Chair of Smart Energy Systems and the Director of the Institute of Communication and Power Networks at School of Electronic and Electrical Engineering, University of Leeds. His recent research interest lies in the development of machine learning and control technologies to support transport decarbonization, funded by over 50 research projects, totaling £20M. He has published over 200 papers in international journals, winning 20 prizes and awards, and has been invited to give over 100 keynotes and invited talks worldwide. 


Speech Title: Machine Learning in Green Transportation – Some Case Studeis

Abstract: The transport decarbonization increases the coupling of the transport and energy systems, demanding a holistic and data-driven approach to manage and operate the systems with increased complexity. This talk presents several case studies in the application of machine learning techniques in holograph based state estimation and management of electric vehicles in complex urban traffic environments.


【投稿参会方式】

投稿链接:https://www.ais.cn/attendees/paperSubmit/YJIFFF

参会报名链接:https://www.ais.cn/attendees/toSignUp/YJIFFF

会议征稿主题详情请查看官网:https://www.ais.cn/attendees/index/YJIFFF


诚邀各专家学者投稿参会!


CISCE 组委会

2025年03月07日

2025/03/07 16:17
【CISCE 2025】线下会议地点通知

尊敬的专家、学者:


第七届IEEE通信、信息系统与计算机工程国际会议(CISCE 2025)已确认会议地点:中国-广州-广州华工大学城中心酒店(详情可见官网酒店信息,报名参会可享受协议价)。会议将于2025年5月9-11日在中国广州举行。诚邀国内外相关高校和科研院所的科研人员、企业工程技术人员等参加会议。


请现场参会者填写以下统计表,以便会务组统计人数以及准备物资餐食:

【腾讯文档】CISCE 2025参会统计 https://docs.qq.com/form/page/DSWJTUEpjQXdjZHdO


【会议信息】

会议时间:2025年5月9-11日

会议地点:中国-广州-广州华工大学城中心酒店


【会议亮点】

1、会议已连续举办6届,CISCE 往届均已完成EI和Scopus检索,连续4届均在会后3-4个月左右完成EI检索!!!

2、IEEE出版社(ISBN: 979-8-3315-0161-7),稳定见刊EI快检索,录用率高!


【出版信息】

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CISCE 2025所有的投稿都必须经过2-3位组委会专家审稿,经过严格的审稿之后,会议所录用论文将由IEEE(ISBN:979-8-3315-0161-7)出版,出版后提交 EI Compendex, Scopus检索。


【征稿主题】

Ⅰ、通讯技术

Ⅱ、信息系统

Ⅲ、计算机工程

Ⅳ、跨学科融合

Ⅴ、其他相关主题


【投稿参会方式】

投稿链接:https://www.ais.cn/attendees/paperSubmit/YJIFFF

参会报名链接:https://www.ais.cn/attendees/toSignUp/YJIFFF

会议征稿主题详情请查看官网:https://www.ais.cn/attendees/index/YJIFFF


诚邀各专家学者投稿参会!


CISCE 组委会

2025年02月28日

2025/02/28 09:50
CISCE 2025已上线IEEE


第七届IEEE通信、信息系统与计算机工程国际会议(CISCE 2025)

2025 IEEE 7th International Conference on Communications, Information System 

and Computer Engineering 

2025年5月9-11日 | 中国-广州 | www.iccisce.com

收录检索:IEEE Xplore, EI Compendex, Scopus


CISCE 在多年内一直保持着非常良好的出版及检索历史,连续4届均在会后3个月左右完成EI检索!!!

CISCE 上线IEEE.png

CISCE 2025已经上线IEEE,详情点击查看:Click


论文出版

所有的投稿都必须经过2-3位组委会专家审稿,经过严格的审稿之后,最终所有录用的论文将由IEEE出版,收录进IEEE Xplore数据库,并提交EI核心和Scopus检索。


投稿参会方式

投稿链接:https://www.ais.cn/attendees/paperSubmit/YJIFFF

参会报名链接:https://www.ais.cn/attendees/toSignUp/YJIFFF

会议征稿主题详情请查看官网:https://www.ais.cn/attendees/index/YJIFFF


诚邀各专家学者投稿参会!


2024/12/24 11:48
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