近期论文
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代表性学术论文:
期刊论文:
[18] Z. Yang, Y. Yao, *M.Y. Li* .et al, Bandwidth Extension of Doherty Power Amplifier Using Complex Combining Load With Noninfinity Peaking Impedance, IEEE Trans. Microw. Theory Techn.,. Volume: 67 , Issue: 2 , Feb. 2019. PP:765-777. (该顶级期刊上重庆地区首篇微波有源电路设计文章)
[17] Z. Yang, *M.Y. Li*, Yao Yao, et al. Design of Concurrent Dual-Band Continuous Class-J Mode Doherty Power Amplifier With Precise Impedance Terminations. IEEE Microw. Wireless Compon. Lett. 2019. 29(5):348-350.
[16] Y. Jin, N. Dang, G. Yang, *M.Y. Li*, et al. A novel design method for extending power back-off range of broadband Doherty power amplifier, Microwave and Optical Technology Letters, 2019, 61(4):2420-2426.
[15] Y. Yao, Y. Jin, *M.Y. Li*, et al. An Accurate Three-Input Nonlinear Model for Joint Compensation of Frequency-Dependent I/Q Imbalance and Power Amplifier Distortion[J]. IEEE Access, 2019, 7, 140651-140664
[14] J. Xu, W. Jiang, L. Ma, *M.Y. Li*, et al. Augmented Time-Delay Twin Support Vector Regression-Based Behavioral Modeling for Digital Predistortion of RF Power Amplifier, IEEE Access, 2019, 7, 59832-59843
[13] Z. Yang, Y. Yao, *M.Y. Li* .etc,, A Precise Harmonic Control Technique for High Efficiency Concurrent Dual-Band Continuous Class-F Power Amplifier,IEEE Access, 2018; Vol(6), 51864-51874.
[12] Z. Yang, Y. Yao, Z. Liu, *M.Y. Li* .et al, , Design of High Efficiency Broadband Continuous Class-F Power Amplifier Using Real Frequency Technique with Finite Transmission Zero, IEEE Access, 2018; Vol(6), 61983-61993.
[11] Y. Yao, *M.Y. Li*, et al, “Compressive Sensing Based Adaptive Sparse Predistorter Design for Power Amplifier Linearization”, International Journal of Circuit Theory and Applications, 2018; 46(4), 812-826.
[10] Z. Yang , *M.Y. Li* , et al. Design of multioctave power amplifiers based on high order resistive-reactive series of continuous modes. Microwave and Optical Technology Letters, 2018, 60(5):1234-1238.
[9] Z. Yang, Y. Yao, Y. Jin, *M.Y. Li*, et. al, Synthesizing and Optimizing of Wide Stopband Low-Pass Filter with Improved Infinite Attenuation Unit Based on Stubs, Frequenz, 72(11-12) · August 2018.
[8] Y. Yao, *M.Y. Li* .et. al, Power Amplifier Behavioral Model Adaptive Pruning Using Conjugate Gradient-Based Greedy Algorithm, IEEJ Transactions on Electrical and Electronic Engineering. 2017; 12(S1): S181–S182
[7] *M.Y. Li* .et. al, "Sparsity Adaptive Estimation of Memory Polynomial-Based Models for Power Amplifier Behavioral Modeling," IEEE Microwave and Wireless Components Letters 2016. 5. 370-372.
[6] Z. Hu,*M.Y. Li*. et. al, "Realization of High Efficient Linear Power Amplifier with Harmonic Tuning," IEEJ Transactions on Electronics, Information and Systems. vol. 136, no.3, pp.434–435, Mar. 2016.
[5] G. Chen, Y. Zhang, Q. Dong, *M.Y. Li*, et. al, Layout Dependent Effect-aware Leakage Current Reduction and Its Application to Low-power SAR-ADC, IEICE Transaction on Fundamentals of Electronics, Communication and Computer Sciences, Vol. E98-A NO.7, pp.1442-1454. July 1, 2015.
[4] *M.Y. Li*, et. al, A New Sparse Design Framework for Broadband Power Amplifier Behavioral Modeling and Digital Predistortion, IEEJ transactions on Electrical and Electronic Engineering. vol. 60, no. 5, pp. 532-541, Sep. 2014
[3] *M.Y. Li*, et. al, Complex-Chebyshev Functional Link Neural Network Behavioral Model for Broadband Wireless Power Amplifiers, IEEE Trans. Microw. Theory Techn., vol.60, no. 6, pp. 1979–1989, Jun. 2012.
[2] Y. Zhang, G. Chen, B. yang, J. Li, *M.Y. Li*, et. al, Analog Circuit Synthesis with Constraint Generation of Layout-Dependent Effects by Geometric Programming, IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences, vol. E96, no. 12, pp 2487–2498, Jun. 2013.
[1] *M.Y. Li*, Songbai He, XiaodongLi. Complex Radial Basis Function Networks Trained by QR-Decomposition Recursive Least Square Algorithms Applied in Behavioral Modeling of Nonlinear Power Amplifiers. International Journal of RF and Microwave Computer-aided Engineering, 19(6), pp634-646, 2009.
会议论文:
[7] M, Zhu, *M.Y. Li *, et. al. Dice Coefficient Matching-Based Sparsity Adaptive Matching Pursuit Algorithm for the Digital Predistortion Model Pruning, 2018 IEEE 18th International Conference on Communication Technology (ICCT), Chongqing, 10.
[6] Y. Yao, S. He. *M.Y. Li *, et. al, " Power Amplifier Behavioral Model Dimension Pruning Using Sparse Principal Component Analysis", 2018 IEEE 18th International Conference on Communication Technology (ICCT), Chongqing, 10.
[5] 靳一, 李明玉, 等. “星载自适应稀疏预失真技术研究.” 第四届高分辨率对地观测年会(获得青年创新基金十万元),武汉,2017, 432-442.
[4] *M.Y. Li *, et. al, "Simplified Compressed Sensing-Based VolterraModel for Broadband Wireless Power Amplifiers", The 26th workshop oncircuits and systems, IEEE Circuits and Systems Society, Japan Chapter, Osaka,Japan, July 29-30,2013.
[3] *M.Y. Li*, et. al, “Wideband Digital Predistorter Design Using Subspace Pursuit-Based Volterra Model”, The 4th IEICE International Conference on Integrated Circuits Design and Verification (ICDV2013), Ho Chi Minh City, Vietnam, November 15-16, 2013.
[2] Y. Zhang, G. Chen, Q. Dong, *M.Y. Li*, et. al “Performance- driven SRAM Macro Design withParameterized Cell Considering Layout-dependent Effects”,21st IFIP/IEEEInternational Conference on Very Large Scale Integration (VLSI-SoC 2013),156-161, Istanbul, Turkey, Oct 7-9, 2013.
[1] *M.Y. Li*, S. He, X. Li. Modeling the nonlinear power amplifierwith memory usingcomplex-valued radial basis function networks. 2008 International Conference onMicrowave and Millimeter Wave Technology Proceedings, ICMMT 2008, 100-103.