[1] Yang Yan,Xu Pingping .A Novel Design of Sharp MDFT Filter Banks withLow Complexity Based on DPSO-MFO Algorithm ,Advances in Intelligent Systems andComputing[J],2017,01(541):424-430(EI).
[2]Yan Yang, Pingping. Xu The Design of Optimal Synthesis Filter Bank andReceiver for the FBMC System, Advances in Intelligent Systems and Computing[J],2017.12(686):247-253(EI).
[3]Yang Yan,Xu Pingping. PAPR Reduction of BMC-OQAM Signals Based onCuckoo Search Optimization Algorithm.2017 IEEE International Conference onSignal Processing, Communications and Computing (C).(EI)
[4]Signal detection based on deep learning in MIMO-OFDM systems.Pro of SPIE2022. (C).(EI)
[5]Yan Yang, Pingping. Xu.PAPR Reduction of FBMC-OQAM Signals UsingParticle Swam Optimization Algorithm Based on MBJO-PTS, Advances in IntelligentSystems and Computing, [J]2019.01(8856): 167–176, (EI).
[6]YanYang, Ronglong Cheng,Weiquan Hu .Design of Communication Module Based on ZigbeeWireless Transmission, Display and Photonics of SPIE,2010(7):77491L-3-4(EI)
[7]YanYang ,Weiquan Hu, Ronglong Cheng LMI-based criterion for the global asymptoticstability of two dimensions state-space digital filters, Engineering andTechnology of IEEE, 2012(5):491-493(EI)
[1]1.Weixia Gao, Huawei Chen. An order-aware scheme for robust direction ofarrival estimation in the spherical harmonic domain[J].The Journal of theAcoustical Society of America,2019,146(6):4883-4897.
[3] Li Y, Tian J. First-Principles study ofElastic properties, Hardness and Debye temperature of O-BN under pressures[J].IOP Conference Series Earth and Environmental Science, 2017, 94(1):012177.(EI)
1. K.Li, G. Liu*, Y. Li, J. Yang and W. Ma, “Ultra-Small Fiber Bragg GratingAccelerometer”, Applied Sciences, vol.9, no.13, article no. 2707, 2019.
2. K.Li*, T. H. T. Chan, M. H. Yau, D. P. Thambiratnam and H. Y. Tam, "Maximumamplification of a string transverse-force amplifier in fiber Bragg gratingaccelerometers," OSA Continuum, vol.2, no.3, pp.938-945, 2019.
3. K.Li*, “Review of the Strain Modulation Methods Used in Fiber Bragg GratingSensors,” Journal of Sensors, vol. 2016, Article ID 1284520, 2016. (SCI, IF 1.704)
4. K.Li*, T. H. T. Chan, M. H. Yau, D. P. Thambiratnam and H. Y. Tam, "FiberBragg grating accelerometer based on a transversely rotating stick."Optik, vol.126, no.23, pp. 4337-4341, 2015. (SCI, IF 0.835)
5. K.Li*, T. H. T. Chan, M. H. Yau, D. P. Thambiratnam and H. Y. Tam, “Biaxial fiberBragg grating accelerometer using axial and transverse forces”, IEEE PhotonicsTechnology Letters, vol.26, no.15, pp. 1549-1552, 2014.(SCI, IF 2.375)
6. K.Li*, T. H. T. Chan, M. H. Yau, D. P. Thambiratnam and H. Y. Tam, “Experimentalverification of the modified spring-mass theory of fiber Bragg gratingaccelerometers using transverse forces”, Applied Optics, vol.53, no.6, pp.1200-1211, 2014. (SCI, IF 1.650)