Effect of Limited Phase Shift on Single-Pixel Imaging using Carrier-Depletion Silicon Photonic Phased Array

2021 ◽  
Author(s):  
Samar Emara ◽  
Taichiro Fukui ◽  
Kento Komatsu ◽  
Yusuke Kohno ◽  
Takuo Tanemura ◽  
...  
Author(s):  
Yusuke Kohno ◽  
Kento Komatsu ◽  
Yasuyuki Ozeki ◽  
Yoshiaki Nakano ◽  
Takuo Tanemura

2020 ◽  
pp. 1-1
Author(s):  
Taichiro Fukui ◽  
Yusuke Kohno ◽  
Rui Tang ◽  
Yoshiaki Nakano ◽  
Takuo Tanemura

2021 ◽  
pp. 1-1
Author(s):  
Samar Emara ◽  
Taichiro Fukui ◽  
Kento Komatsu ◽  
Yusuke Kohno ◽  
Rui Tang ◽  
...  

Author(s):  
Apostolos Tsakyridis ◽  
Eugenio Ruggeri ◽  
George Kalfas ◽  
Ruud M. Oldenbeuving ◽  
Paul W. L. van Dijk ◽  
...  

2019 ◽  
Vol 11 (6) ◽  
pp. 1-9 ◽  
Author(s):  
Mathias Prost ◽  
Yi-Chun Ling ◽  
Semih Cakmakyapan ◽  
Yu Zhang ◽  
Kaiqi Zhang ◽  
...  

Sensors ◽  
2021 ◽  
Vol 21 (19) ◽  
pp. 6544
Author(s):  
Dong Zhou ◽  
Jie Cao ◽  
Huan Cui ◽  
Qun Hao ◽  
Bing-kun Chen ◽  
...  

Single-pixel imaging, with the advantages of a wide spectrum, beyond-visual-field imaging, and robustness to light scattering, has attracted increasing attention in recent years. Fourier single-pixel imaging (FSI) can reconstruct sharp images under sub-Nyquist sampling. However, the conventional FSI has difficulty balancing imaging quality and efficiency. To overcome this issue, we proposed a novel approach called complementary Fourier single-pixel imaging (CFSI) to reduce the number of measurements while retaining its robustness. The complementary nature of Fourier patterns based on a four-step phase-shift algorithm is combined with the complementary nature of a digital micromirror device. CFSI only requires two phase-shifted patterns to obtain one Fourier spectral value. Four light intensity values are obtained by loading the two patterns, and the spectral value is calculated through differential measurement, which has good robustness to noise. The proposed method is verified by simulations and experiments compared with FSI based on two-, three-, and four-step phase shift algorithms. CFSI performed better than the other methods under the condition that the best imaging quality of CFSI is not reached. The reported technique provides an alternative approach to realize real-time and high-quality imaging.


2019 ◽  
Vol 8 (2) ◽  
pp. 2292-2296

In this paper, a 3-bit digital phase shifter based on switched transmission line technique using coplanar waveguide is proposed. The design has the resonant frequency of 10 GHz which can be used in wireless communication applictaions. Recent developments in radio frequency components development has raised as a significant way for constructing low loss phase shifters. MEMS phase shifters whose insertion loss is low and high isolation uses minimum power. This helps to bring low cost and light weighted phased array antennas. The transmission line length and wavelength decides the characteristics of phase shift. The phase shifter design consists of coplanar waveguides having center conductor width of 100µm and the gap of 14 µm on a FR-4 epoxy substrate with thickness of 1.6mm. The design is simulated using ADS to yield phase shift of 45, 90 and 180. The benefits of digital phase shifters include achieving flat phase over a wide bandwidth as well as having higher power handling and linearity with uniform performance. The phase shifters are used in different fields which includes microwave devices, feeder of radio system, phased array antenna, coherent radio system, etc.


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