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Lin Cheng 0006
Person information
- affiliation: CableLabs, Louisville, CO, USA
- affiliation (PhD 2017): Georgia Institute of Technology, Atlanta, GA, USA
Other persons with the same name
- Lin Cheng — disambiguation page
- Lin Cheng 0001 — University of Science and Technology of China, Hefei, Anhui, China (and 1 more)
- Lin Cheng 0002 — Beijing University of Posts and Telecommunications, State Key Laboratory of Networking and Switch Technology, China
- Lin Cheng 0003 — Inner Mongolia University of Technology, Huhhot, China
- Lin Cheng 0004 — Trinity College, Department of Engineering, Hartford, CT, USA (and 1 more)
- Lin Cheng 0005 — University of Macau, Faculty of Education, Macau
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Books and Theses
- 2017
- [b1]Lin Cheng:
Centralization and synchronization of millimeter-wave coordinated multi-point transmission in heterogeneous fiber-wireless access networks. Georgia Institute of Technology, Atlanta, GA, USA, 2017
Journal Articles
- 2017
- [j2]Jing Wang, Zhenhua Yu, Kai Ying, Junwen Zhang, Feng Lu, Mu Xu, Lin Cheng, Xiaoli Ma, Gee-Kung Chang:
Digital Mobile Fronthaul Based on Delta-Sigma Modulation for 32 LTE Carrier Aggregation and FBMC Signals. JOCN 9(2): A233-A244 (2017) - 2016
- [j1]Mu Xu, Jhih-Heng Yan, Junwen Zhang, Feng Lu, Jing Wang, Lin Cheng, Daniel Guidotti, Gee-Kung Chang:
Bidirectional Fiber-Wireless Access Technology for 5G Mobile Spectral Aggregation and Cell Densification. JOCN 8(12): B104-B110 (2016)
Conference and Workshop Papers
- 2023
- [c27]Irene Macaluso, Nicolas Metts, Sayandev Mukherjee, Lin Cheng:
Biologically Inspired Multi-carrier Autoencoder Architectures for Communications. FTC (1) 2023: 246-253 - [c26]Lin Cheng, Bernardo A. Huberman:
Satellite Resource Allocation via Dynamic Auctions and LSH-based Predictions. VTC2023-Spring 2023: 1-5 - 2022
- [c25]Shahrukh Khan Kasi, Sayandev Mukherjee, Lin Cheng, Bernardo A. Huberman:
Reinforcement Learning for Standards Design. VTC Spring 2022: 1-6 - 2021
- [c24]Lin Cheng, Bernardo A. Huberman, Mu Xu:
Portfolio Theory in Millimeter-Wave Coordinated Multi-Point Transmission. RWS 2021: 133-136 - 2020
- [c23]Lin Cheng, Bernardo A. Huberman:
Dynamic Bandwidth Allocation in Small-Cell Networks: An Economics Approach. RWS 2020: 225-227 - 2019
- [c22]Shuyi Shen, Bernardo A. Huberman, Lin Cheng, Gee-Kung Chang:
Power Loading Based on Portfolio Theory for Densified Millimeter-Wave Small-Cell Communications. OFC 2019: 1-3 - [c21]Mu Xu, Junwen Zhang, Haipeng Zhang, Zhensheng Jia, Jing Wang, Lin Cheng, Luis Alberto Campos, Curtis Knittle:
Multi-Stage Machine Learning Enhanced DSP for DP-64QAM Coherent Optical Transmission Systems. OFC 2019: 1-3 - 2018
- [c20]Zhensheng Jia, Luis Alberto Campos, Jing Wang, Lin Cheng, Curtis Knittle:
Evolved Cable Access Networks to Support 5G Services. OFC 2018: 1-3 - [c19]Shuyi Shen, Thavamaran Kanesan, Feng Lu, Mu Xu, Lin Cheng, Jing Wang, Yahya M. Alfadhli, Hyung Joon Cho, Sufian Mousa Mitani, Gee-Kung Chang:
Efficient Mobile Fronthaul Using Windowed OFDM Exhibiting High CFO Tolerance and Strong OOB-leakage Suppression with Low DSP Complexity. OFC 2018: 1-3 - 2017
- [c18]Lin Cheng, Feng Lu, Jing Wang, Mu Xu, Shuyi Shen, Gee-Kung Chang:
Millimeter-wave radio bundling for reliable transmission in multi-section fiber-wireless mobile fronthaul. OFC 2017: 1-3 - [c17]Lin Cheng, Po-Tsong Boris Shih, Anthony Ng'oma, Gee-Kung Chang:
Optimal synchronization based on anchor phase linear regression for self-interference cancellation in software-defined-radio fiber-wireless systems. OFC 2017: 1-3 - [c16]Feng Lu, Lin Cheng, Mu Xu, Jing Wang, Shuyi Shen, Gee-Kung Chang:
Orthogonal chirp division multiplexing in millimeter-wave fiber-wireless integrated systems for enhanced mobile broadband and ultra-reliable communications. OFC 2017: 1-3 - [c15]Feng Lu, Mu Xu, Lin Cheng, Jing Wang, Shuyi Shen, Charles Su, Gee-Kung Chang:
Efficient mobile fronthaul serving massive MIMO new radio services using single-IF with sample-wise TDM for reduced RRH complexity and ultra-low latency. OFC 2017: 1-3 - [c14]Gee-Kung Chang, Lin Cheng:
Fiber-wireless integration for future mobile communications. RWS 2017: 16-18 - 2016
- [c13]Lin Cheng, Xiang Liu, Naresh Chard, Frank J. Effenberger, Gee-Kung Chang:
Experimental demonstration of sub-Nyquist sampling for bandwidth- and hardware-efficient mobile fronthaul supporting 128×128 MIMO with 100-MHz OFDM signals. OFC 2016: 1-3 - [c12]Lin Cheng, Mu Xu, Feng Lu, Jing Wang, Junwen Zhang, Xiaoli Ma, Gee-Kung Chang:
Millimeter-wave cell grouping for optimized coverage based on radio-over-fiber and centralized processing. OFC 2016: 1-3 - [c11]Feng Lu, Yu-Chieh Chi, Mu Xu, Lin Cheng, Jing Wang, Cheng-Ting Tsai, Gong-Ru Lin, Gee-Kung Chang:
Cost-effective bi-directional mobile fronthaul employing WRC-FPLD for beyond LTE-Advanced services. OFC 2016: 1-3 - [c10]Mu Xu, Junwen Zhang, Feng Lu, Lin Cheng, Jing Wang, Daniel Guidotti, Thavamaran Kanesan, Sufian Mousa Mitani, Gee-Kung Chang:
Multiband OQAM CAP modulation in MMW RoF systems with enhanced spectral and computational efficiency. OFC 2016: 1-3 - 2015
- [c9]Junwen Zhang, Mu Xu, Jing Wang, Feng Lu, Lin Cheng, Ming Zhu, Md Ibrahim Khalil, Jianjun Yu, Gee-Kung Chang:
Carrier aggregation for MMW inter-RAT and intra-RAT in next generation heterogeneous mobile data network based on optical domain band mapping. ECOC 2015: 1-3 - [c8]Lin Cheng, Malik Muhammad Usman Gul, Anthony Ng'oma, Feng Lu, Xiaoli Ma, Gee-Kung Chang:
High-diversity millimeter-wave CoMP transmission based on centralized SFBC in radio-over-fiber systems. OFC 2015: 1-3 - [c7]Feng Lu, Lin Cheng, Ming Zhu, Jing Wang, Mu Xu, Xiaoli Ma, Gee-Kung Chang:
Generalized frequency division multiplexing for photonic-assisted millimeter-wave carrier aggregation. OFC 2015: 1-3 - [c6]Jianyu Zheng, Mu Xu, Lixian Wang, Zhongle Wu, Lin Cheng, Md Ibrahim Khalil, Jianguo Liu, Ninghua Zhu, Sophie LaRochelle, Gee-Kung Chang:
Efficient carrier-reuse for MMW-RoF access network architecture with orthogonal phase-correlated modulation. OFC 2015: 1-3 - 2014
- [c5]Mu Xu, Jing Wang, Ming Zhu, Lin Cheng, Yahya M. Alfadhli, Ze Dong, Gee-Kung Chang:
Non-overlapping downlink and uplink wavelength reuse in WDM-PON employing microwave photonic techniques. ECOC 2014: 1-3 - [c4]Lin Cheng, Cheng Liu, Ming Zhu, Jing Wang, Gee-Kung Chang:
Optical CoMP transmission in millimeter-wave small cells for mobile fronthaul. OFC 2014: 1-3 - [c3]Lin Cheng, Cheng Liu, Ming Zhu, Jing Wang, Gee-Kung Chang:
Centralized optical pre-coding for multi-cell MIMO in millimeter-wave radio-over-fiber system. OFC 2014: 1-3 - [c2]Ming Zhu, Lin Cheng, Jing Wang, Cheng Liu, Gee-Kung Chang:
Adaptive photonic-assisted M-ary ASK/M-QAM millimeter-wave synthesis in multi-antenna Radio-over-Fiber system. OFC 2014: 1-3 - 2013
- [c1]Lin Cheng, Cheng Liu, Ming Zhu, Jing Wang, Gee-Kung Chang:
Centralized small-cell radio access network with shared millimeter-wave radio-over-fiber resources. GLOBECOM 2013: 2448-2453
Informal and Other Publications
- 2023
- [i5]Bernardo A. Huberman, Bob Lund, Jing Wang, Lin Cheng:
Experimental Demonstration of Secure Frequency Hopping Communication Enabled by Quantum Key Distribution. CoRR abs/2307.05495 (2023) - 2022
- [i4]Lin Cheng, Bernardo A. Huberman:
Auction-based Operation in LEO Satellite Systems for High-Efficiency Communications. CoRR abs/2211.09787 (2022) - 2021
- [i3]Shahrukh Khan Kasi, Sayandev Mukherjee, Lin Cheng, Bernardo A. Huberman:
Reinforcement Learning for Standards Design. CoRR abs/2110.06909 (2021) - 2019
- [i2]Shuyi Shen, Bernardo A. Huberman, Lin Cheng, Gee-Kung Chang:
Power Loading based on Portfolio Theory for Densified Millimeter-Wave Small-Cell Communications. CoRR abs/1902.00046 (2019) - [i1]Lin Cheng, Bernardo A. Huberman:
Dynamic Bandwidth Allocation in Small-Cell Networks: An Economics Approach. CoRR abs/1909.08656 (2019)
Coauthor Index
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