Scientific journal paper Q1
Feasibility of radar-based detection of floating macroplastics at microwave frequencies
João Felício (Felício, J. M.); Tomás Soares Da Costa (Costa, T. So Da); Mário Vala (Vala, M.); Nuno Leonor (Leonor, N.); Jorge Rodrigues da Costa (Costa, J. R.); Paulo Marques (Marques, P.); António A. Moreira (Moreira, A. A.); Rafael F. S. Caldeirinha (Caldeirinha, R. F. S.); Sérgio Matos (Matos, S.); Carlos António Cardoso Fernandes (Fernandes, C. A.); Nelson J. G. Fonseca (Fonseca, N. J. G.); Peter de Maagt (de Maagt, P.); et al.
Journal Title
IEEE Transactions on Antennas and Propagation
Year (definitive publication)
2024
Language
English
Country
United States of America
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Abstract
Plastic marine litter is becoming a major environmental concern. Microwaves (MW) have potential for remote detection of floating macroplastics operating from Satellites or Airborne platforms, but very scarce and limited studies exist in the literature evaluating MW radar effectiveness for this purpose. We present first results of a systematic study on MW scattering of floating low-mass macroplastics at 2-20 GHz frequency band using radar techniques. Data was first collected in small-scale measurement campaigns carried out in an indoor facility capable of producing deep sea-like wave patterns, with different floating single-use plastic items. The study reveals that, for these targets, one important scattering contribution arises from the indentation they produce on the water. For the tested conditions, targets, and metrics, it was possible to detect several types of floating plastic targets down to 10 g/m 2 concentration. Detection tended to significantly improve at the X-band, although the detection threshold depends on the combination of the mentioned conditions. Tests were extended also to two small-scale outdoor scenarios with natural wind and capillary waves. Detection of macroplastics was successful in these tested scenarios.
Acknowledgements
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Keywords
Active radar,Backscattering,Macroplastics,Marine plastics,Microwave (MW) sensing,Polarimetry,Polarization,Pollution,Remote sensing,Rough surface,Scattering measurements,Sea scattering
  • Electrical Engineering, Electronic Engineering, Information Engineering - Engineering and Technology

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