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Article

Regional-Scale Analysis of Soil Moisture Content in Malawi Determined by Remote Sensing

by
Pearse C. Murphy
1,2,
Patricia Codyre
1,2,
Michael Geever
1,2,
Jemima O’Farrell
1,2,
Dúalta Ó Fionnagáin
1,2,
Charles Spillane
2,3 and
Aaron Golden
1,2,*
1
School of Natural Sciences, College of Science and Engineering, University of Galway, H91 TK33 Galway, Ireland
2
Ryan Institute, University of Galway, H91 TK33 Galway, Ireland
3
School of Biological and Chemical Sciences, College of Science and Engineering, University of Galway, H91 TK33 Galway, Ireland
*
Author to whom correspondence should be addressed.
Remote Sens. 2025, 17(5), 890; https://doi.org/10.3390/rs17050890
Submission received: 27 November 2024 / Revised: 12 February 2025 / Accepted: 24 February 2025 / Published: 3 March 2025

Abstract

Soil moisture content is typically measured in situ using various instruments; however, due to the heterogeneous nature of soil, these measurements are only suitable at a very local scale. To overcome this limitation, earth observation satellite remote sensing data, particularly through the inversion of the closure phases of interferometric synthetic aperture radar (InSAR) observations, enables the determination of soil moisture content at regional to global scales. Here, we present, for the first time, a regional-scale study of soil moisture determined from remote sensing observations of Malawi, specifically, two areas of interest capturing arable and national parklands in Kasungu and Liwonde. We invert the closure phases of InSAR acquisitions from Sentinel-1 between 1 January 2023 and 31 May 2024 to measure the soil moisture content in the same time range. We show that soil moisture content is heavily influenced by local precipitation and highlight common trends in soil moisture in both regions. We suggest the difference in soil moisture observed inside and outside the national parks is a result of different overlying vegetation and conservation agriculture practices during the maize crop cycle in Malawi. Our results show the effectiveness and suitability of remote sensing techniques to monitor soil moisture at a regional scale. The upcoming additions to ESA’s fleet of earth observation satellites, in particular Sentinel-1C, will allow for higher-time-resolution soil moisture measurements.
Keywords: SAR; InSAR; soil moisture; remote sensing; NDVI; Malawi SAR; InSAR; soil moisture; remote sensing; NDVI; Malawi

Share and Cite

MDPI and ACS Style

Murphy, P.C.; Codyre, P.; Geever, M.; O’Farrell, J.; Ó Fionnagáin, D.; Spillane, C.; Golden, A. Regional-Scale Analysis of Soil Moisture Content in Malawi Determined by Remote Sensing. Remote Sens. 2025, 17, 890. https://doi.org/10.3390/rs17050890

AMA Style

Murphy PC, Codyre P, Geever M, O’Farrell J, Ó Fionnagáin D, Spillane C, Golden A. Regional-Scale Analysis of Soil Moisture Content in Malawi Determined by Remote Sensing. Remote Sensing. 2025; 17(5):890. https://doi.org/10.3390/rs17050890

Chicago/Turabian Style

Murphy, Pearse C., Patricia Codyre, Michael Geever, Jemima O’Farrell, Dúalta Ó Fionnagáin, Charles Spillane, and Aaron Golden. 2025. "Regional-Scale Analysis of Soil Moisture Content in Malawi Determined by Remote Sensing" Remote Sensing 17, no. 5: 890. https://doi.org/10.3390/rs17050890

APA Style

Murphy, P. C., Codyre, P., Geever, M., O’Farrell, J., Ó Fionnagáin, D., Spillane, C., & Golden, A. (2025). Regional-Scale Analysis of Soil Moisture Content in Malawi Determined by Remote Sensing. Remote Sensing, 17(5), 890. https://doi.org/10.3390/rs17050890

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