activity
20162018
most citedAnalysis on 60 GHz Wireless Communications with Beamwidth-Dependent Misalignment

12 citations · 21 across the 5 of their papers we have counts for

collaborators

7 papers

cs.NI2018★ 1 cited

Low-Latency Heterogeneous Networks with Millimeter-Wave Communications

Guang Yang, Ming Xiao, Muhammad Alam +1

Heterogeneous network (HetNet) is a key enabler to largely boost network coverage and capacity in the forthcoming fifth-generation (5G) and beyond. To support the explosively growi…

cs.NI2017

Traffic Allocation for Low-Latency Multi-Hop Networks with Buffers

Guang Yang, Martin Haenggi, Ming Xiao

For millimeter-wave (mm-wave) buffer-aided tandem networks consisting of relay nodes and multiple channels per hop, we consider two traffic allocation schemes, namely local allocat…

cs.NI2017★ 3 cited

Performance Analysis of Millimeter-Wave Relaying: Impacts of Beamwidth and Self-Interference

Guang Yang, Ming Xiao

We study the maximum achievable rate of a two-hop amplified-and-forward (AF) relaying millimeter-wave (mm-wave) system, where two AF relaying schemes, i.e., half-duplex (HD) and fu…

cs.NI2017

Low-Latency Millimeter-Wave Communications: Traffic Dispersion or Network Densification?

Guang Yang, Ming Xiao, H. Vincent Poor

This paper investigates two strategies to reduce the communication delay in future wireless networks: traffic dispersion and network densification. A hybrid scheme that combines th…

cs.IT2016★ 12 cited

Analysis on 60 GHz Wireless Communications with Beamwidth-Dependent Misalignment

Guang Yang, Jinfeng Du, Ming Xiao

High speed wireless access on 60 GHz spectrum relies on high-gain directional antennas to overcome the severe signal attenuation. However, perfect alignment between transmitting an…

cs.PF2016

Delay and Backlog Analysis for 60 GHz Wireless Networks

Guang Yang, Ming Xiao, James Gross +2

To meet the ever-increasing demands on higher throughput and better network delay performance, 60 GHZ networking is proposed as a promising solution for the next generation of wire…