Beam Squinting Effects in Super Wideband Communication Systems
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arXiv
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| Main Authors: | , , , , , |
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| Format: | Preprint |
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2026
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| _version_ | 1866910134571106304 |
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| author | Bandara, Sachitha C. Smith, Peter J. Khordad, Erfan Dmochowski, Pawel Evans, Robin Senanayake, Rajitha |
| author_facet | Bandara, Sachitha C. Smith, Peter J. Khordad, Erfan Dmochowski, Pawel Evans, Robin Senanayake, Rajitha |
| contents | Beam squint, the frequency-dependent shift of the main beam, poses a major challenge for wideband antenna arrays. This paper focuses on the beam squint effects in super wideband (SW) systems, where high mutual coupling (MC) effects are present. These high MC effects complicate beamforming (BF) by creating frequency-dependent phase relationships that invalidate conventional approaches. To accurately model MC effects, this paper uses a circuit-theoretic framework for tightly coupled SW uniform linear arrays (ULAs). We derive closed-form expressions for the average received signal-to-noise ratio (SNR) with BF in conventional half-wavelength spaced, weakly coupled arrays and validate them. Extending our analysis to tightly coupled SW arrays, we demonstrate that, in contrast to conventional weakly coupled arrays, the effective true time delays exhibit a nonlinear dependence on frequency due to coupling-induced phase shifts. A comparative analysis reveals that strong MC in SW arrays significantly reduces squint in phase-controlled BF, extending the usable bandwidth considerably. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2604_14557 |
| institution | arXiv |
| publishDate | 2026 |
| record_format | arxiv |
| spellingShingle | Beam Squinting Effects in Super Wideband Communication Systems Bandara, Sachitha C. Smith, Peter J. Khordad, Erfan Dmochowski, Pawel Evans, Robin Senanayake, Rajitha Signal Processing Information Theory Beam squint, the frequency-dependent shift of the main beam, poses a major challenge for wideband antenna arrays. This paper focuses on the beam squint effects in super wideband (SW) systems, where high mutual coupling (MC) effects are present. These high MC effects complicate beamforming (BF) by creating frequency-dependent phase relationships that invalidate conventional approaches. To accurately model MC effects, this paper uses a circuit-theoretic framework for tightly coupled SW uniform linear arrays (ULAs). We derive closed-form expressions for the average received signal-to-noise ratio (SNR) with BF in conventional half-wavelength spaced, weakly coupled arrays and validate them. Extending our analysis to tightly coupled SW arrays, we demonstrate that, in contrast to conventional weakly coupled arrays, the effective true time delays exhibit a nonlinear dependence on frequency due to coupling-induced phase shifts. A comparative analysis reveals that strong MC in SW arrays significantly reduces squint in phase-controlled BF, extending the usable bandwidth considerably. |
| title | Beam Squinting Effects in Super Wideband Communication Systems |
| topic | Signal Processing Information Theory |
| url | https://arxiv.org/abs/2604.14557 |