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Yingying Bi
Yingying Bi
Verified email at stanford.edu
Title
Cited by
Cited by
Year
QPAR: A quasi-passive reconfigurable green node for dynamic resource management in optical access networks
Y Bi, J Jin, AR Dhaini, LG Kazovsky
Journal of Lightwave Technology 32 (6), 1104-1115, 2013
242013
Remotely powered and reconfigured quasi-passive reconfigurable nodes for optical access networks
Y Bi, S Shen, J Jin, K Wang, LG Kazovsky
Journal of Electrical and Computer Engineering 2016, 1-1, 2016
162016
A novel quasi-passive, software-defined, and energy efficient optical access network for adaptive intra-PON flow transmission
S Yin, TS Shen, Y Bi, J Jin, T Oyama, LG Kazovsky
Journal of Lightwave Technology 33 (22), 4536-4546, 2015
142015
First experimental demonstration of a remotely powered quasi-passive reconfigurable node
Y Bi, J Jin, LG Kazovsky
IEEE Photonics Technology Letters 27 (9), 990-993, 2015
112015
Quasi-passive reconfigurable optical node: First experimental demonstration
Y Bi, J Jin, LG Kazovsky
CLEO: Science and Innovations, CTh1H. 5, 2012
72012
UltraFlow access network with remotely powered and controlled quasi-passive reconfigurable remote node
TSR Shen, Y Bi, S Yin, J Jin, LG Kazovsky
Journal of Lightwave Technology 34 (9), 2213-2220, 2016
52016
Bidirectional quasi-passive reconfigurable (Bi-QPAR) remote node for future optical access networks
K Wang, Y Bi, AS Gowda, LG Kazovsky
Journal of Lightwave Technology 35 (11), 2109-2117, 2017
42017
Quasi-passive reconfigurable node for 5G mobile optical backhaul networks
K Wang, A Gowda, S Yin, Y Bi, LG Kazovsky
Journal of Lightwave Technology 36 (23), 5432-5441, 2018
32018
Bidirectional quasi-passive reconfigurable (Bi-QPAR) node for flexible access networks
K Wang, Y Bi, LG Kazovsky
2016 Conference on Lasers and Electro-Optics (CLEO), 1-2, 2016
32016
Software-defined intra-PON optical flow transmission via a quasi-passive reconfigurable (QPAR) node
S Yin, TSR Shen, Y Bi, J Jin, LG Kazovsky
CLEO: Science and Innovations, SF2K. 4, 2015
32015
Quasi-passive and reconfigurable optical node: Implementations with discrete latching switches
J Jin, Y Bi, M De Leenheer, LG Kazovsky, JPK Perin, MRN Ribeiro
IEEE Photonics Conference 2012, 917-918, 2012
32012
Experimental demonstration of a high-dimension quasi-passive reconfigurable (QPAR) node
Y Bi, J Jin, AR Dhaini, LG Kazovsky
CLEO: Science and Innovations, STu1J. 7, 2014
22014
Multi-dimensional quasi-passive reconfigurable (MD-QPAR) node for future 5G optical networks
K Wang, A Gowda, Y Bi, LG Kazovsky
Optical Fiber Communication Conference, Tu2K. 2, 2017
12017
Remotely pumped and high splitting ratio (1: 512) intra-PON flow transmission via a distantly powered quasi-passive reconfigurable (QPAR) node
S Yin, Y Bi, TS Shen, T Oyama, LG Kazovsky
2015 European Conference on Optical Communication (ECOC), 1-3, 2015
12015
Quasi-Passive Reconfigurable (QPAR) node enabled software-defined and energy-efficient intra-PON optical Flow transmission
S Yin, TSR Shen, Y Bi, J Jin, LG Kazovsky
2015 Opto-Electronics and Communications Conference (OECC), 1-3, 2015
12015
Quasi-Passive Reconfigurable Nodes for Optical Access Networks
Y Bi
Stanford University, 2016
2016
QPAR: A Quasi-Passive and Reconfigurable node for green next-generation optical access networks
Y Bi, J Jin, AR Dhaini, LG Kazovsky
2013 IEEE Global Communications Conference (GLOBECOM), 2549-2554, 2013
2013
Analysis for Association between Genomic Information and Survival Rate of Glioblastoma Multiforme
Y Bi, W Zhang, J Luo
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Articles 1–18