activity
20162020
most citedDeep Learning for Ultra-Reliable and Low-Latency Communications in 6G Networks

8 citations · 19 across the 5 of their papers we have counts for

collaborators

5 papers

eess.SP20208 cited

Deep Learning for Ultra-Reliable and Low-Latency Communications in 6G Networks

Changyang She, Rui Dong, Zhouyou Gu +6

In the future 6th generation networks, ultra-reliable and low-latency communications (URLLC) will lay the foundation for emerging mission-critical applications that have stringent…

eess.SP20191 cited

Towards Ultra-Reliable Low-Latency Communications: Typical Scenarios, Possible Solutions, and Open Issues

Daquan Feng, Changyang She, Kai Ying +5

Ultra-reliable low-latency communications (URLLC) has been considered as one of the three new application scenarios in the \emph{5th Generation} (5G) \emph {New Radio} (NR), where…

cs.IT20164 cited

Uplink Transmission Design with Massive Machine Type Devices in Tactile Internet

Changyang She, Chenyang Yang, Tony Q. S. Quek

In this work, we study how to design uplink transmission with massive machine type devices in tactile internet, where ultra-short delay and ultra-high reliability are required. To…

cs.IT20161 cited

Energy Efficient Design for Tactile Internet

Changyang She, Chenyang Yang

Ensuring the ultra-low end-to-end latency and ultrahigh reliability required by tactile internet is challenging. This is especially true when the stringent Quality-of-Service (QoS)…

cs.IT20165 cited

Cross-layer Transmission Design for Tactile Internet

Changyang She, Chenyang Yang, Tony Q. S. Quek

To ensure the low end-to-end (E2E) delay for tactile internet, short frame structures will be used in 5G systems. As such, transmission errors with finite blocklength channel codes…