2016 - IEEE Fellow For leadership in millimeter wave communication technology
His scientific interests lie mostly in Electrical engineering, Base station, Wireless, Electronic engineering and Mobile station. His Electrical engineering study incorporates themes from Extremely high frequency, Computer network and Mobile broadband. His Base station research incorporates themes from Transmission, Telecommunications link and Communications system.
Zhouyue Pi mostly deals with Beamforming in his studies of Electronic engineering. His studies deal with areas such as Transmitter, Radio frequency, Antenna and Precoding as well as Beamforming. His Mobile station study incorporates themes from Channel and Computer hardware.
Zhouyue Pi spends much of his time researching Base station, Computer network, Electronic engineering, Wireless and Transmission. His Base station research includes elements of Signal, Electrical engineering and Telecommunications link. Within one scientific family, he focuses on topics pertaining to Mobile broadband under Electrical engineering, and may sometimes address concerns connected to Broadband networks and Backhaul.
His research links Wireless network with Computer network. As a member of one scientific family, he mostly works in the field of Electronic engineering, focusing on Precoding and, on occasion, Baseband. His biological study deals with issues like Algorithm, which deal with fields such as Permutation and Cyclic redundancy check.
Zhouyue Pi focuses on Base station, Electronic engineering, Transmission, Wireless and Telecommunications link. His Base station research focuses on Mobile station in particular. His Electronic engineering research is multidisciplinary, incorporating perspectives in MIMO, Communication channel, Precoding and Cyclic prefix.
Zhouyue Pi works mostly in the field of Precoding, limiting it down to topics relating to Baseband and, in certain cases, Spectral efficiency. The various areas that Zhouyue Pi examines in his Transmission study include Transmitter, Algorithm and Communications system. His Antenna research extends to Wireless, which is thematically connected.
His primary areas of study are Base station, Mobile station, Telecommunications link, Electronic engineering and Electrical engineering. His Base station research incorporates themes from Wireless and Wireless network. His studies in Wireless integrate themes in fields like Transmitter power output and Antenna.
His work in Mobile station covers topics such as Channel which are related to areas like Radio frequency, Computer hardware and Extremely high frequency. His work carried out in the field of Electronic engineering brings together such families of science as MIMO, Synchronization and Timing advance. His work in the fields of Electrical engineering, such as Transmission, Mobile telephony and Fixed access, overlaps with other areas such as IMT Advanced.
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Spatially Sparse Precoding in Millimeter Wave MIMO Systems
Omar El Ayach;Sridhar Rajagopal;Shadi Abu-Surra;Zhouyue Pi.
IEEE Transactions on Wireless Communications (2014)
An introduction to millimeter-wave mobile broadband systems
Zhouyue Pi;Farooq Khan.
IEEE Communications Magazine (2011)
Low complexity precoding for large millimeter wave MIMO systems
Omar El Ayach;Robert W. Heath;Shadi Abu-Surra;Sridhar Rajagopal.
international conference on communications (2012)
Apparatus and method for spatial division duplex(sdd) for millimeter wave communication system
Kkhan Faruk;Pi Chzhoujueh.
(2011)
The capacity optimality of beam steering in large millimeter wave MIMO systems
Omar El Ayach;Robert W. Heath;Shadi Abu-Surra;Sridhar Rajagopal.
international workshop on signal processing advances in wireless communications (2012)
mmWave mobile broadband (MMB): Unleashing the 3–300GHz spectrum
Farooq Khan;Zhouyue Pi.
ieee sarnoff symposium (2011)
Fundamentals of Heterogeneous Cellular Networks with Energy Harvesting
Harpreet S. Dhillon;Ying Li;Pavan Nuggehalli;Zhouyue Pi.
IEEE Transactions on Wireless Communications (2014)
Apparatus and method for control channel beam management in a wireless system with a large number of antennas
조우유에 피;카우시크 조시암;파반 누게할리.
(2013)
Method and apparatus for random access in communication system with large number of antennas
리차드 스털링-갈라처;조우유에 피;라케쉬 타오리.
(2013)
Methods and apparatus to improve performance and enable fast decoding of transmissions with multiple code blocks
ファルーク・カーン;ツォウイェ・ピ.
(2008)
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