Bin Shao

About Bin Shao

Bin Shao, With an exceptional h-index of 5 and a recent h-index of 5 (since 2020), a distinguished researcher at Chongqing University, specializes in the field of Microwave photonics, Fiber optical technology, Signal processing.

His recent articles reflect a diverse array of research interests and contributions to the field:

Chip‐Based Microwave Photonic Payload Repeater for High Throughput Satellites

A simple microwave photonic phase shifter based on waveplate rotation

Tuning magnetic property of Si-doped Fe2P alloys via strain engineering

Correlation-changed-EMD algorithm for single frequency-sweep interferometry signal of high-speed rotating structure clearance measurement

A microwave photonic mixer with complete suppression of LO spurious

Atomically thin two-dimensional hybrid perovskites using hydrophobic superalkali cations with tunable electron transition type

Chip-based microwave-photonic LiDAR for high-speed ranging and velocimetry

Dual-channel microwave photonic frequency conversion and transmission method with immunity to periodically power fading

Bin Shao Information

University

Position

College of Optoelectronic Engineering

Citations(all)

68

Citations(since 2020)

68

Cited By

4

hIndex(all)

5

hIndex(since 2020)

5

i10Index(all)

2

i10Index(since 2020)

2

Email

University Profile Page

Google Scholar

Bin Shao Skills & Research Interests

Microwave photonics

Fiber optical technology

Signal processing

Top articles of Bin Shao

Chip‐Based Microwave Photonic Payload Repeater for High Throughput Satellites

Laser & Photonics Reviews

2024/2/1

A simple microwave photonic phase shifter based on waveplate rotation

2023/12/21

Wu Zhang
Wu Zhang

H-Index: 31

Bin Shao
Bin Shao

H-Index: 2

Tuning magnetic property of Si-doped Fe2P alloys via strain engineering

Journal of Magnetism and Magnetic Materials

2023/12/1

Bin Shao
Bin Shao

H-Index: 2

Correlation-changed-EMD algorithm for single frequency-sweep interferometry signal of high-speed rotating structure clearance measurement

IEEE Sensors Journal

2023/10/27

A microwave photonic mixer with complete suppression of LO spurious

2023/1/9

Atomically thin two-dimensional hybrid perovskites using hydrophobic superalkali cations with tunable electron transition type

Physical Chemistry Chemical Physics

2023

Bin Shao
Bin Shao

H-Index: 2

Chip-based microwave-photonic LiDAR for high-speed ranging and velocimetry

2022/12/19

Dual-channel microwave photonic frequency conversion and transmission method with immunity to periodically power fading

2022/12/16

Theoretical investigation of DFSI with immunity to both Doppler effect and frequency-sweep nonlinearity

Optoelectronics Letters

2022/11

Microwave-photonic dynamic frequency-swept interferometry for fast ranging

2022/10/3

Dynamic demodulation of low-finesse fabry-perot sensors based on instantaneous frequency analysis

Journal of Lightwave Technology

2022/5/1

Algorithm of Doppler error suppression in frequency-swept interferometry for the dynamic axial clearance measurement of high-speed rotating machinery

Optics express

2021/12/20

Study on suppressing Doppler effect and non-linearity simultaneously in dynamic clearance measurement of frequency swept interferometry

2021/10/9

基于差分探测的低相干外差干涉间隙测量技术

ACTA PHOTONICA SINICA

2021/9/25

基于调频干涉的发动机转静子轴向间隙测量技术

Laser & Optoelectronics Progress

2021/6/1

Multi-parameter measurement of rotors using the doppler effect of frequency-swept interferometry

Sensors

2020/12/15

Dynamic clearance measurement using fiber-optic frequency-swept and frequency-fixed interferometry

IEEE photonics technology letters

2020/9/9

A demodulation model of dynamic low-finesse Fabry-Perot cavity based on the instantaneous frequency

IEEE Access

2020/4/13

See List of Professors in Bin Shao University(Chongqing University)