The accurate and non-invasive measurement of moisture content in wood is essential for the preservation of historical and artistic artifacts. This study presents the calibration of a planar Microwave Planar Capacitive Coupled Ring Resonator (MPCCRR) designed to indirectly and non-destructively assess the water content in wood samples. The method relies on analyzing shifts in the resonant frequencies and variations in the transmission parameter |S21| resulting from changes in the material’s dielectric permittivity. After preliminary characterization via parametric simulations (εr = 1–10) and validation with low-permittivity reference materials, the sensor was tested on three wood species (poplar, fir, beech), including measurements at two sensor positions and with different grain orientations. The results demonstrate a monotonic, repeatable response to increasing moisture content with frequency shifts up to ≈220 MHz and normalized sensitivities ranging from 3 to 9 MHz/% water content, depending on species and measurement position. Position 2 showed the greatest sensitivity due to stronger field–sample interaction, while Position 1 provided a quasi-isotropic response with excellent repeatability. Linear regression analyses revealed good correlations between the frequency shifts and the gravimetric water content (R 2 ≥ 0.85). The MPCCRR sensor therefore proves to be a promising tool for the non-invasive monitoring of wood moisture, which is particularly suitable for the lowmoisture range encountered in cultural heritage conservation, with an estimated moisture uncertainty of 0.12–0.35% under controlled laboratory conditions.

Calibration of a capacitive coupled ring resonator for non-invasive measurement of wood moisture content / D'Alvia, Livio; Apa, Ludovica; Rizzuto, Emanuele; Pittella, Erika; Del Prete, Zaccaria. - In: INSTRUMENTS. - ISSN 2410-390X. - 10:1(2026), pp. 1-18. [10.3390/instruments10010011]

Calibration of a capacitive coupled ring resonator for non-invasive measurement of wood moisture content

D'Alvia, Livio
;
Apa, Ludovica;Rizzuto, Emanuele;Pittella, Erika;Del Prete, Zaccaria
2026

Abstract

The accurate and non-invasive measurement of moisture content in wood is essential for the preservation of historical and artistic artifacts. This study presents the calibration of a planar Microwave Planar Capacitive Coupled Ring Resonator (MPCCRR) designed to indirectly and non-destructively assess the water content in wood samples. The method relies on analyzing shifts in the resonant frequencies and variations in the transmission parameter |S21| resulting from changes in the material’s dielectric permittivity. After preliminary characterization via parametric simulations (εr = 1–10) and validation with low-permittivity reference materials, the sensor was tested on three wood species (poplar, fir, beech), including measurements at two sensor positions and with different grain orientations. The results demonstrate a monotonic, repeatable response to increasing moisture content with frequency shifts up to ≈220 MHz and normalized sensitivities ranging from 3 to 9 MHz/% water content, depending on species and measurement position. Position 2 showed the greatest sensitivity due to stronger field–sample interaction, while Position 1 provided a quasi-isotropic response with excellent repeatability. Linear regression analyses revealed good correlations between the frequency shifts and the gravimetric water content (R 2 ≥ 0.85). The MPCCRR sensor therefore proves to be a promising tool for the non-invasive monitoring of wood moisture, which is particularly suitable for the lowmoisture range encountered in cultural heritage conservation, with an estimated moisture uncertainty of 0.12–0.35% under controlled laboratory conditions.
2026
dielectric measurements; moisture measurement; split ring resonator; microwave sensors; wood
01 Pubblicazione su rivista::01a Articolo in rivista
Calibration of a capacitive coupled ring resonator for non-invasive measurement of wood moisture content / D'Alvia, Livio; Apa, Ludovica; Rizzuto, Emanuele; Pittella, Erika; Del Prete, Zaccaria. - In: INSTRUMENTS. - ISSN 2410-390X. - 10:1(2026), pp. 1-18. [10.3390/instruments10010011]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1762801
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