A dual-input extended-dynamic-PCE rectifier for dedicated far-field RF energy harvesting systems
Author:
Funder
RU Grant-Faculty Program
Publisher
Springer Science and Business Media LLC
Subject
Surfaces, Coatings and Films,Hardware and Architecture,Signal Processing
Link
https://link.springer.com/content/pdf/10.1007/s10470-021-01802-5.pdf
Reference13 articles.
1. Yuen, P. W., Chong, G., & Ramiah, H. (2019). A high efficient dual-output rectifier for piezoelectric energy harvesting. AEU - International Journal of Electronics and Communications, 111, 152922.
2. Chong, G., Ramiah, H., Yin, J., Rajendran, J., Wong, W. R., Mak, P. I., & Martins, R. P. (2018). Ambient RF energy harvesting system: a review on integrated circuit design. Analog Integrated Circuits and Signal Processing, 97, 515–531.
3. Stoopman, M., Keyrouz, S., Visser, H. J., Philips, K., & Serdijn, W. A. (2014). Co-design of a CMOS rectifier and small loop antenna for highly sensitive RF energy harvesters. IEEE Journal of Solid-State Circuits, 49(3), 622–634.
4. Scorcioni, S., Larcher, L., & Bertacchini, A. (2013). A reconfigurable differential CMOS RF energy scavenger with 60% peak efficiency and -21 dBm sensitivity. IEEE Microwave and Wireless Components Letters, 23(3), 155–157.
5. Li, C., & Lee, T. (2014). 2.4-GHz high-efficiency adaptive power harvester.IEEE Transactions on Very Large Scale Integration Systems, 22(2), 434–438.
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