UM

Browse/Search Results:  1-10 of 37 Help

Selected(0)Clear Items/Page:    Sort:
Multinetwork constrained planning of hydrogen-power supplying facilities under double-layer coupling mechanisms Journal article
Xia, Weiyi, Ren, Zhouyang, Qin, Huiling, Li, Hui, Yang, Zhixue. Multinetwork constrained planning of hydrogen-power supplying facilities under double-layer coupling mechanisms[J]. International Journal of Hydrogen Energy, 2024, 71, 718-729.
Authors:  Xia, Weiyi;  Ren, Zhouyang;  Qin, Huiling;  Li, Hui;  Yang, Zhixue
Favorite | TC[WOS]:3 TC[Scopus]:3  IF:8.1/7.3 | Submit date:2024/06/05
Dg Planning  Hydrogen Energy  Hydrogen Refueling Stations  Hydrogen Supply Networks  Power Distribution Networks  
A 521pW, 0.016%/V Line Sensitivity Self-Biased CMOS Voltage Reference With DIBL Effect Compensation Using Adaptive VGS Control Journal article
Yu, Kai, Yang, Shangru, Li, Sizhen, Huang, Mo. A 521pW, 0.016%/V Line Sensitivity Self-Biased CMOS Voltage Reference With DIBL Effect Compensation Using Adaptive VGS Control[J]. IEEE Transactions on Circuits and Systems II: Express Briefs, 2024, 71(4), 1754-1758.
Authors:  Yu, Kai;  Yang, Shangru;  Li, Sizhen;  Huang, Mo
Favorite | TC[WOS]:1 TC[Scopus]:1  IF:4.0/3.7 | Submit date:2024/05/02
Cmos Voltage Reference  Dibl Effect Compensation  Line Sensitivity  Power Supply Rejection Ratio  Self-biased  Ultra-low Power  
A 0.011%/V LS and −76-dB PSRR Self-Biased CMOS Voltage Reference With Quasi Self-Cascode Current Mirror Journal article
Yu, Kai, Chen, Jiyang, Li, Sizhen, Huang, Mo. A 0.011%/V LS and −76-dB PSRR Self-Biased CMOS Voltage Reference With Quasi Self-Cascode Current Mirror[J]. IEEE Transactions on Circuits and Systems II: Express Briefs, 2024, 71(3), 1052-1056.
Authors:  Yu, Kai;  Chen, Jiyang;  Li, Sizhen;  Huang, Mo
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:4.0/3.7 | Submit date:2024/02/22
Cmos Voltage Reference  Line Sensitivity  Power Supply Rejection Ratio  Quasi Self-cascode Current Mirror  Self-biased  
A 0.15-μs/V Buck-Boost Symbol-Power-Tracking Supply Modulator With Dual Auxiliary Current Paths and EPP Scheme for 5G NR Power Amplifiers Journal article
Xu, Peng, Kang, Jin, Tong, Zhiguo, Cao, Peng, Wang, Yingjie, Shi, Hanyu, Xu, Jiawei, Hong, Zhiliang. A 0.15-μs/V Buck-Boost Symbol-Power-Tracking Supply Modulator With Dual Auxiliary Current Paths and EPP Scheme for 5G NR Power Amplifiers[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2023, 70(11), 4660-4670.
Authors:  Xu, Peng;  Kang, Jin;  Tong, Zhiguo;  Cao, Peng;  Wang, Yingjie; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:5.2/4.5 | Submit date:2023/12/04
5g New Radio  Average Power Tracking  Reference Tracking  Supply Modulator  Symbol Power Tracking  
A 2.7 W AC-Coupled Hybrid Supply Modulator Achieving 200 MHz Envelope-Tracking Bandwidth for 5G New Radio Power Amplifier Journal article
Peng Xu, Xueli Zhang, Peng Cao, Tingting Wei, Zhiguo Tong, Xiaoyang Zeng, Jiawei Xu, Zhiliang Hong. A 2.7 W AC-Coupled Hybrid Supply Modulator Achieving 200 MHz Envelope-Tracking Bandwidth for 5G New Radio Power Amplifier[J]. IEEE Transactions on Power Electronics, 2023, 38(6), 7416-7427.
Authors:  Peng Xu;  Xueli Zhang;  Peng Cao;  Tingting Wei;  Zhiguo Tong; et al.
Favorite | TC[WOS]:3 TC[Scopus]:5  IF:6.6/6.9 | Submit date:2023/07/26
5g New Radio (Nr)  Envelope Tracking (Et)  Hy- Brid Supply Modulator  Power Amplifier (Pa)  Wideband Transmitter  
A 200 MHz Passive Rectifier With Active-Static Hybrid VTHCompensation Obtaining 8% PCE Improvement Journal article
Li, Xiaofei, Lu, Yan, Martins, Rui P.. A 200 MHz Passive Rectifier With Active-Static Hybrid VTHCompensation Obtaining 8% PCE Improvement[J]. IEEE Transactions on Power Electronics, 2023, 38(5), 5655-5658.
Authors:  Li, Xiaofei;  Lu, Yan;  Martins, Rui P.
Favorite | TC[WOS]:4 TC[Scopus]:5  IF:6.6/6.9 | Submit date:2023/06/05
200 Mhz  Active-hybrid Vth Compensation  Implant Medical Devices  Passive Rectifier  Power Supply Isolation  
Evaluation and Perspective of Analog Low-Dropout Voltage Regulators: A Review Journal article
TAN YEE CHYAN, HARIKRISHNAN RAMIAH, S. F. WAN MUHAMAD HATTA, NAI SHYAN LAI, CHEE-CHEOW LIM, YONG CHEN, PUI-IN MAK, RUI P. MARTINS. Evaluation and Perspective of Analog Low-Dropout Voltage Regulators: A Review[J]. IEEE Access, 2022, 10, 114469-114489.
Authors:  TAN YEE CHYAN;  HARIKRISHNAN RAMIAH;  S. F. WAN MUHAMAD HATTA;  NAI SHYAN LAI;  CHEE-CHEOW LIM; et al.
Favorite | TC[WOS]:12 TC[Scopus]:16  IF:3.4/3.7 | Submit date:2023/01/30
Adaptive Biasing  Analog Ldos (Aldo)  Bulk Modulation  Capacitor-less Output  Charge Pump  Flipped Voltage Follower (Fvf)  Linear Low-dropout Regulators (Ldos)  Power Management Integrated Circuits (Pmics)  Power Supply Rejection (Psr)  
A low dropout regulator with PSR under-48dB up to 20GHz for a SARADC reference buffer Conference paper
Yi Zeng, Chi-Hang Chan, Yan Zhu, Rui P. Martins. A low dropout regulator with PSR under-48dB up to 20GHz for a SARADC reference buffer[C], 2022.
Authors:  Yi Zeng;  Chi-Hang Chan;  Yan Zhu;  Rui P. Martins
Favorite | TC[WOS]:0 TC[Scopus]:0 | Submit date:2023/03/06
Low Dropout Regulator (Ldo)  High Power Supply Rejection (Psr)  Reference Buffer  Successive-approximation-register (Sar)  Analog-to-digital Converter (Adc)  
Nonuniform Power Factor Partial Compensation for Compensating Current Reduction Using Particle Swarm Optimization in Traction Power Supply System Journal article
Li Liu, Ningyi Dai, Keng Weng Lao, Yonghua Song. Nonuniform Power Factor Partial Compensation for Compensating Current Reduction Using Particle Swarm Optimization in Traction Power Supply System[J]. IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2022, 69(6), 6140-6151.
Authors:  Li Liu;  Ningyi Dai;  Keng Weng Lao;  Yonghua Song
Favorite | TC[WOS]:9 TC[Scopus]:12  IF:7.5/8.0 | Submit date:2022/05/13
Full Compensation (Fc)  Partial Compensation (Pc)  Power Factor (Pf)  Traction Power Supply System (Tpss)  
Comparative analysis of energy efficiency of AC and DC power supply systems in different regions and buildings Conference paper
JIANG Keteng, LI Haibo, LEI Yi, LIU Jingrong, ZHANG Junzhe, YANG Han. Comparative analysis of energy efficiency of AC and DC power supply systems in different regions and buildings[C], 2022, 4859-4864.
Authors:  JIANG Keteng;  LI Haibo;  LEI Yi;  LIU Jingrong;  ZHANG Junzhe; et al.
Favorite | TC[Scopus]:3 | Submit date:2023/01/30
Net Zero Energy Building  Dc Power Distribution System  Ac And Dc Energy Efficiency Improvement  Energy Storage-friendly Algorithm  Photovoltaic Power Supply