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20172024
most citedJoint Frame Design and Resource Allocation for Ultra-Reliable and Low-Latency Vehicular Networks

2 citations · 5 across the 6 of their papers we have counts for

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Showing cs.ITShow all

9 papers · 1 filter

cs.IT2024

Ambient IoT towards 6G: Standardization, Potentials, and Challenges

Kan Zheng, Rongtao Xu, Jie Mei +3

The Ambient Internet of Things (A-IoT) has emerged as a critical direction for achieving effective connectivity as the IoT system evolves to 6G. However, the introduction of A-IoT…

cs.IT2023

Vision-Assisted mmWave Beam Management for Next-Generation Wireless Systems: Concepts, Solutions and Open Challenges

Kan Zheng, Haojun Yang, Ziqiang Ying +2

Beamforming techniques have been widely used in the millimeter wave (mmWave) bands to mitigate the path loss of mmWave radio links as the narrow straight beams by directionally con…

cs.IT2022★ 1 cited

Dynamic Beam-Based Random Access Scheme for M2M Communications in Massive MIMO Systems

Kan Zheng, Haojun Yang, Xiong Xiong +2

Internet of things, supported by machine-to-machine (M2M) communications, is one of the most important applications for future 6th generation (6G) systems. A major challenge facing…

cs.IT2020★ 2 cited

Leveraging Linear Quadratic Regulator Cost and Energy Consumption for Ultra-Reliable and Low-Latency IoT Control Systems

Haojun Yang, Kuan Zhang, Kan Zheng +1

To efficiently support the real-time control applications, networked control systems operating with ultra-reliable and low-latency communications (URLLCs) become fundamental techno…

cs.IT2020★ 2 cited

Joint Frame Design and Resource Allocation for Ultra-Reliable and Low-Latency Vehicular Networks

Haojun Yang, Kuan Zhang, Kan Zheng +1

The rapid development of the fifth generation mobile communication systems accelerates the implementation of vehicle-to-everything communications. Compared with the other types of…

cs.IT2019

Twin-Timescale Radio Resource Management for Ultra-Reliable and Low-Latency Vehicular Networks

Haojun Yang, Kan Zheng, Long Zhao +1

To efficiently support safety-related vehicular applications, the ultra-reliable and low-latency communication (URLLC) concept has become an indispensable component of vehicular ne…