Thomas Q. Wang

Orcid: 0000-0002-2326-4549

According to our database1, Thomas Q. Wang authored at least 21 papers between 2012 and 2019.

Collaborative distances:
  • Dijkstra number2 of four.
  • Erdős number3 of four.

Timeline

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Links

On csauthors.net:

Bibliography

2019
Adaptive AoA and Polarization Estimation for Receiving Polarized mmWave Signals.
IEEE Wirel. Commun. Lett., 2019

Analysis and Mitigation of Clipping Noise in Layered ACO-OFDM Based Visible Light Communication Systems.
IEEE Trans. Commun., 2019

Low-Complexity Multiuser Receiver for Massive Hybrid Array mmWave Communications.
IEEE Trans. Commun., 2019

Joint Adaptive AoA and Polarization Estimation Using Hybrid Dual-Polarized Antenna Arrays.
IEEE Access, 2019

Enhanced AoA Estimation Using Localized Hybrid Dual-Polarized Arrays.
Proceedings of the 90th IEEE Vehicular Technology Conference, 2019

2018
Fractional Reverse Polarity Optical OFDM for High Speed Dimmable Visible Light Communications.
IEEE Trans. Commun., 2018

Matrix Normalization Based ZF Hybrid Precoded Multi-User MIMO mmWave Systems with Massive Array.
Proceedings of the 88th IEEE Vehicular Technology Conference, 2018

2017
Diversity Combining for Layered Asymmetrically Clipped Optical OFDM Using Soft Successive Interference Cancellation.
IEEE Commun. Lett., 2017

Dimming Compatible Optical OFDM for High Speed Visible Light Communications.
Proceedings of the 85th IEEE Vehicular Technology Conference, 2017

Low-Complexity Uplink Multiuser Receivers for MIMO System with Massive Hybrid Array.
Proceedings of the 85th IEEE Vehicular Technology Conference, 2017

Cramer-Rao bound for AOA-based VLP with an aperture-based receiver.
Proceedings of the IEEE International Conference on Communications, 2017

2016
Experimental Demonstration of Diversity Combining for Asymmetrically Clipped Optical OFDM.
IEEE Commun. Lett., 2016

Cramer-Rao bound for indoor visible light positioning using an aperture-based angular-diversity receiver.
Proceedings of the 2016 IEEE International Conference on Communications, 2016

Performance comparison between spatial multiplexing and spatial modulation in indoor MIMO visible light communication systems.
Proceedings of the 2016 IEEE International Conference on Communications, 2016

2015
MIMO Optical Wireless Communications Using ACO-OFDM and a Prism-Array Receiver.
IEEE J. Sel. Areas Commun., 2015

MIMO Optical Wireless Receiver Using Photodetectors with Different Fields of View.
Proceedings of the IEEE 81st Vehicular Technology Conference, 2015

Performance of optical receivers using photodetectors with different fields of view in an indoor cellular communication system.
Proceedings of the International Telecommunication Networks and Applications Conference, 2015

Angular diversity for indoor MIMO optical wireless communications.
Proceedings of the 2015 IEEE International Conference on Communications, 2015

2014
Prism array-based receiver with application in MIMO indoor optical wireless communications.
Proceedings of the 16th International Conference on Transparent Optical Networks, 2014

Performance of indoor MIMO optical wireless system using linear receiver with prism array.
Proceedings of the Australian Communications Theory Workshop, AusCTW 2014, Sydney, 2014

2012
Hemispherical lens based imaging receiver for MIMO optical wireless communications.
Proceedings of the Workshops Proceedings of the Global Communications Conference, 2012


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