科學(xué)研究

【深圳大學(xué)40周年校慶800場學(xué)術(shù)活動(dòng)(第628場)】Beyond 5G towards a Super-connected World

發(fā)布時(shí)間:2023-04-19

報(bào) : Prof. Yonghui Li University of Sydney

請(qǐng) 人:張勝利 教授

時(shí)  間:2023年4月18日,周二,10:30-12:00 am Beijing Time

會(huì)議鏈接:https://meeting.tencent.com/dm/i8f1pv67qoGl

騰訊會(huì)議:171-250-495


摘要

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.


簡介

Biography: Yonghui Li is 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. His current research interests are in the area of wireless communications, with a particular focus on IoT, machine to machine communicaitons, MIMO, millimeter wave communications, channel coding techniques, game theory, machine learning and signal processing. Yonghui 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 has published two books, more than 270 papers in premier IEEE journals and more than 150 papers in premier IEEE conferences. His publications have been cited more than 18000 times. He has attracted more than $14 million in competitive research funding over the past 10 years, including 10 ARC grants. He has participated in $500 Millions Australia national demonstration project Smart Grid Smart City and designed last mile access networks.



最新動(dòng)態(tài)

余江县| 招远市| 弥渡县| 沭阳县| 洮南市| 新乐市| 永胜县| 南木林县| 佛学| 常宁市| 阳城县| 新津县| 乌拉特前旗| 东至县| 丰都县| 镇赉县| 九江县| 阳西县| 太仆寺旗| 康乐县| 巢湖市| 江城| 阿勒泰市| 揭阳市| 鹤峰县| 杨浦区| 洞口县| 弋阳县| 永修县| 凤城市| 新巴尔虎右旗| 托克逊县| 景谷| 青海省| 乐山市| 原平市| 闽侯县| 天等县| 湛江市| 宁河县| 太仆寺旗|