(Peer-Reviewed) Digital Predistortion for Concurrent Dual-band Millimeter Wave Analog Multibeam Transmitters
Qian Wu ¹, Jianxin Jing ¹ ², Xiao-Wei Zhu 朱晓维 ¹, Chao Yu 余超 ¹ ³
¹ State Key Laboratory of Millimeter Waves, Southeast University, Nanjing 210096, China
中国 南京 东南大学毫米波国家重点实验室
² Huawei Technol. Co., Ltd., Shanghai 200120, China
中国 上海 华为技术有限公司
³ Purple Mountain Laboratories, Nanjing 211111, China
中国 南京 紫金山实验室
IEEE Transactions on Circuits and Systems II: Express Briefs, 2021-08-16
Abstract
This brief proposes a novel digital predistortion (DPD) technique to linearize concurrent dual-band millimeter wave (mmWave) analog multibeam transmitters. Beams at the same frequency band give full play to the spatial multiplexing, so as to improve spectrum utilization. By means of detailed analysis of the system characteristics, a DPD model is proposed to effectively eliminate the distortions caused by power amplifiers (PAs) including nonlinearity, memory effect, the intermodulation distortion (IMD) between two different frequency bands, and the multibeam interference incurred in undesirable sidelobes in the main beam direction simultaneously.
To validate the proposed idea, a test bench of mmWave analog multibeam transmitter utilizing Butler matrix was designed, and then it was stimulated by a concurrent dual-band signal at 26.91 GHz and 27.09 GHz, respectively. Compared with existing DPD techniques, the proposed method is suitable for compensating the distortions in dual-band analog multibeam transmitters, which has shown its great potential for the applications in future mmWave concurrent dual-band multibeam wireless communication systems.
Meta-lens digital image correlation
Zhou Zhao, Xiaoyuan Liu, Yu Ji, Yukun Zhang, Yong Chen, Zhendong Luo, Yuzhou Song, Zihan Geng, Takuo Tanaka, Fei Qi, Shengxian Shi, Mu Ku Chen
Opto-Electronic Advances
2025-07-29
Broadband ultrasound generator over fiber-optic tip for in vivo emotional stress modulation
Jiapu Li, Xinghua Liu, Zhuohua Xiao, Shengjiang Yang, Zhanfei Li, Xin Gui, Meng Shen, He Jiang, Xuelei Fu, Yiming Wang, Song Gong, Tuan Guo, Zhengying Li
Opto-Electronic Science
2025-07-25
Review for wireless communication technology based on digital encoding metasurfaces
Haojie Zhan, Manna Gu, Ying Tian, Huizhen Feng, Mingmin Zhu, Haomiao Zhou, Yongxing Jin, Ying Tang, Chenxia Li, Bo Fang, Zhi Hong, Xufeng Jing, Le Wang
Opto-Electronic Advances
2025-07-17