Throughput enhancement for millimeter wave communications using reconfigurable intelligent surfaces
Author:
Funder
Saudi Electronic University
Publisher
Springer Science and Business Media LLC
Subject
Electrical and Electronic Engineering
Link
https://link.springer.com/content/pdf/10.1007/s11235-021-00865-z.pdf
Reference37 articles.
1. Zöchmann, E., Groll, H., & Pratschner, S. (2019). A small-scale fading model for overtaking vehicles in a millimeter wave communication link. In 2019 IEEE 20th international workshop on signal processing advances in wireless communications (SPAWC).
2. Jihao, L., Zhenfeng, Y., Yibing, L., Xiaohang, S., Ji, L., & Wei, Z. (2019). Research on millimeter wave phased array antenna for 5G communication. In 2019 IEEE 2nd international conference on electronic information and communication technology (ICEICT).
3. Tsai, C.-H., Pepe, F., Mangraviti, G., Zong, Z., Craninckx, J., & Wambacq, P. (2019). A 22.5–27.7-GHz fast-lock bang–bang digital PLL in 28-nm CMOS for millimeter-wave communication with 220-fs RMS jitter. IEEE Solid-State Circuits Letters, 2(9), 232–239.
4. Pan, P., Zi, Z., Cai, J., & Feng, J. (2019). Millimeter wave vacuum electronic amplifiers for high data rate communication. In: 2019 44th international conference on infrared, millimeter, and terahertz waves (IRMMW-THz).
5. Kaur, J., & Lal Singh, M. (2019). User assisted cooperative relaying in beamspace massive MIMO NOMA based systems for millimeter wave communications. China Communications, 16(6), 103–11.
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