A Harmonic-Energy Regional-Control Jamming Method Based on a Radiating Space–Time-Modulated Digital Metasurface

Complex electromagnetic warfare poses increasingly stringent requirements on the spatial selectivity of jamming systems. Existing jamming methods mainly focus on false-target generation, while research on regional coverage of harmonic energy remains limited. In this paper, a harmonic-energy regional-control jamming method based on a radiating space–time-modulated digital metasurface is proposed. By optimizing the turn-on instants and duty cycles of 1-bit programmable elements, the amplitude, phase, and far-field superposition of the target harmonic are controlled, thereby constructing a predefined jamming region as a reconfigurable angular-domain energy window. The energy ratio inside the designated region, the in-region fluctuation, and the out-of-region leakage are incorporated into a unified optimization objective, enabling different jamming modes such as narrow-angle highly concentrated coverage and wide-angle uniform coverage. Both simulations and experiments verify the controllability of the harmonic radiation patterns and regional energy distributions under different coverage angles. The proposed method provides a quantitatively designable implementation approach for intelligent jamming systems with spatially reconfigurable harmonic energy.

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Publication Details

Journal
Photonics
Published
2026-09-24
DOI
https://doi.org/10.3390/photonics13100908
Primary Topic
Advanced Wireless Communication Technologies
Type
article
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A Harmonic-Energy Regional-Control Jamming Method Based on a Radiating Space–Time-Modulated Digital Metasurface

T. Y. Gao, Jingfeng Chen, Yuehang Sun, Yu Xia et al.
Photonics
Advanced Wireless Communication Technologies
article

A Harmonic-Energy Regional-Control Jamming Method Based on a Radiating Space–Time-Modulated Digital Metasurface

T. Y. Gao, Jingfeng Chen, Yuehang Sun, Yu Xia, Xudong Bai, Ronghong Jin, Yuhua Chen
article en

Abstract

Complex electromagnetic warfare poses increasingly stringent requirements on the spatial selectivity of jamming systems. Existing jamming methods mainly focus on false-target generation, while research on regional coverage of harmonic energy remains limited. In this paper, a harmonic-energy regional-control jamming method based on a radiating space–time-modulated digital metasurface is proposed. By optimizing the turn-on instants and duty cycles of 1-bit programmable elements, the amplitude, phase, and far-field superposition of the target harmonic are controlled, thereby constructing a predefined jamming region as a reconfigurable angular-domain energy window. The energy ratio inside the designated region, the in-region fluctuation, and the out-of-region leakage are incorporated into a unified optimization objective, enabling different jamming modes such as narrow-angle highly concentrated coverage and wide-angle uniform coverage. Both simulations and experiments verify the controllability of the harmonic radiation patterns and regional energy distributions under different coverage angles. The proposed method provides a quantitatively designable implementation approach for intelligent jamming systems with spatially reconfigurable harmonic energy.

PhotonicsVol. 13(10)
Northwestern Polytechnical University (CN), Shanghai Jiao Tong University (CN)
Affordable and clean energy
Openalex Percentile: Top 22%
Advanced Wireless Communication Technologies
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A Harmonic-Energy Regional-Control Jamming Method Based on a Radiating Space–Time-Modulated Digital Metasurface — T. Y. Gao, Jingfeng Chen, et al. · Photonics (2026) | TGRS Research Map | TGRS