Optically controlled phased array transmitter with a controllable main lobe and null

Phased array transmitters often operate in contested electromagnetic environments. To achieve secure transmission and low probability of intercept operation, flexible beam control and generating a null to reduce radiation toward undesired directions are critical. In this work, a wideband optically controlled phased-array (OCPA) transmitter with flexible and independent control of the main lobe and null from a system control perspective is proposed. The proposed system integrates a spatial filter module consisting of an optical true-time delay network and balanced photodetectors. Simulation results for a 16-element OCPA based on the proposed architecture demonstrate that the main lobe and null can be scanned over a range of at least ±40° while maintaining a null depth greater than 50 dB. A proof-of-concept experiment is further carried out using a 5-element OCPA transmitter. The results show that the main lobe and null can be independently steered, with a null depth exceeding 50 dB.

Authors

Publication Details

Journal
Optics Express
Published
2026-09-30
DOI
https://doi.org/10.1364/oe.608654
Primary Topic
Advanced Photonic Communication Systems
Type
article
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article

Optically controlled phased array transmitter with a controllable main lobe and null

Xiangchuan Wang, Shilong Pan, 张江涛, Xi Liu et al.
Optics Express
Advanced Photonic Communication Systems
article

Optically controlled phased array transmitter with a controllable main lobe and null

Xiangchuan Wang, Shilong Pan, 张江涛, Xi Liu, Lihan Wang, Shangzhe Xu, Zeyong Ding, Zhijian Zhang, Wanchen Yang
article en

Abstract

Phased array transmitters often operate in contested electromagnetic environments. To achieve secure transmission and low probability of intercept operation, flexible beam control and generating a null to reduce radiation toward undesired directions are critical. In this work, a wideband optically controlled phased-array (OCPA) transmitter with flexible and independent control of the main lobe and null from a system control perspective is proposed. The proposed system integrates a spatial filter module consisting of an optical true-time delay network and balanced photodetectors. Simulation results for a 16-element OCPA based on the proposed architecture demonstrate that the main lobe and null can be scanned over a range of at least ±40° while maintaining a null depth greater than 50 dB. A proof-of-concept experiment is further carried out using a 5-element OCPA transmitter. The results show that the main lobe and null can be independently steered, with a null depth exceeding 50 dB.

Optics ExpressVol. 34(20)
Affordable and clean energy
Openalex Percentile: Top 22%
Advanced Photonic Communication Systems
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Optically controlled phased array transmitter with a controllable main lobe and null — Xiangchuan Wang, Shilong Pan, et al. · Optics Express (2026) | TGRS Research Map | TGRS