Semiconductor Optoelectronics, Volume. 44, Issue 5, 811(2023)
Photonic Assisted Instantaneous Frequency Measurement Based on Complementary Radio Frequency Power Response
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[2] [2] Wand Y, Ni J, Chi H, et al. Photonic instantaneous microwave frequency measurement based on two different phase modulation to intensity modulation conversions
[3] [3] Li Z, Yang B, Chi H, et al. Photonic instantaneous measurement of microwave frequency using fiber Bragg grating
[4] [4] Yang C W, Wang L, Liu J G. Photonic-assisted instantaneous frequency measurement system based on a scalable structure
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[6] [6] Dai J, Xu K, Sun X Q, et al. A simple photonic-assisted microwave frequency measurement system based on MZI with tunable measurement range and high resolution
[7] [7] Sarkhosh N, Emami H, Bui L, et al. Photonic instantaneous frequency measurement using non-linear optical mixing
[8] [8] Zou X H, Yao J P. An optical approach to microwave frequency measurement with adjustable measurement range and resolution
[9] [9] Ganjali M, Hosseini S, Jamshidi K, et al. Theoretical investigation of a photonic-assisted instantaneous frequency measurement with a tunable measurement range and resolution by adjusting the chirp parameter of an optical intensity modulator
[10] [10] Zhang X, Chi H, Zhang X, et al. Instantaneous microwave frequency measurement using an optical phase modulator
[16] [16] Lu B, Pan W, Zou X H, et al. Photonic frequency measurement and signal separation for pulsed/CW microwave signals
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LI Cong, TIAN Chaohui, HAN Zhe. Photonic Assisted Instantaneous Frequency Measurement Based on Complementary Radio Frequency Power Response[J]. Semiconductor Optoelectronics, 2023, 44(5): 811
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Received: Jun. 19, 2023
Accepted: --
Published Online: Nov. 20, 2023
The Author Email: Zhe HAN (hanzhe830526@126.com)