Abstract
This paper focuses on executing a novel methodology to achieve imaging time reduction via 3D imaging algorithm based on Huygens principle using a microwave imaging device
(MammoWave). Specifically, a three-layer cylindrical phantom with a 3D structured inclusion has been fabricated with varying dielectric properties. Various spiral-like (along z-axis) measurement scenarios have been considered to investigate the possibility of measurement time reduction. In the first scenario, we have performed measurements in spiral-like configuration-I at multiple
planes along the z-axis, while for the second scenario we have applied spiral configuration-II in an alternate way in terms of receiving points. We found that the proposed spiral-like measurement scenarios may lead to a measurement time saving of 50%, with a lower S/C ratio (decrease of
maximum 3.2 dB) and slightly higher error (approximately 3.5%) in inclusion dimensional analysis and localization.
Original language | English |
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Pages | 684-691 |
Number of pages | 8 |
DOIs | |
Publication status | Published - 3 Jul 2023 |
Event | Photonics & Electromagnetics Research Symposium (Piers) 2023 - Duration: 7 Mar 2023 → … |
Conference
Conference | Photonics & Electromagnetics Research Symposium (Piers) 2023 |
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Period | 7/03/23 → … |
Keywords
- Microwave Imaging
- MammoWave
- Spiral-like Acquisition
- 3D Huygens' Principle