Nottingham Geospatial Institute


Publications

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SUN, A., ZHANG, Q., GAO, X., MENG, X., ZHANG, Y. and HANCOCK, C., 2023. BDS Dual-Frequency Carrier Phase Multipath Hemispherical Map Model and Its Application in Real-Time Deformation Monitoring: Sensors Sensors. 23(14),

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VRÎNCEANU, CRISTINA A., GREBBY, STEPHEN and MARSH, STUART, 2023. The performance of speckle filters on Copernicus Sentinel-1 SAR images containing natural oil slicks. QUARTERLY JOURNAL OF ENGINEERING GEOLOGY AND HYDROGEOLOGY. 56(3), qjegh2022-046

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GEE, DAVID, SOWTER, ANDREW, ATHAB, AHMED, GREBBY, STEPHEN, WU, ZHENMING and BOIKO, KATERYNA, 2023. Remote monitoring of minewater rebound and environmental risk using satellite radar interferometry. SCIENCE OF THE TOTAL ENVIRONMENT. 857, 159272

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LI, C., HANCOCK, C. M., VADAKKE VEETTIL, S., ZHAO, D., GALERA MONICO, J. F. and HAMM, N. A. S., 2022. Distinguishing ionospheric scintillation from multipath in GNSS signals using geodetic receivers: GPS Solutions GPS Solutions. 26(4),

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LI, C., HANCOCK, C. M., VADAKKE VEETTIL, S., ZHAO, D. and HAMM, N. A. S., 2022. Mitigating the Scintillation Effect on GNSS Signals Using MP and ROTI: Remote Sensing Remote Sensing. 14(23),

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HUANG, Z., JIN, S., SU, K. and TANG, X., 2022. Multi-GNSS Precise Point Positioning with UWB Tightly Coupled Integration: Sensors Sensors. 22(6),

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TANG, X., LIU, Z., WYN ROBERTS, G. and MATTHEW HANCOCK, C., 2022. PPP-derived tropospheric ZWD augmentation from local CORS network tested on bridge monitoring points: Advances in Space Research Advances in Space Research.

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LYE, R., BENNETT, C., ROUSE, J. and ZUMPANO, G., 2022. An inverse analysis method for determining abradable constitutive properties: Materials Today Communications Materials Today Communications. 33,

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COLE, SARATSI, E, EARNSHAW, K, WILLCOCK, S, GARDNER, E, BRADLEY AV, FREEMANTLE, C and BEZANT, J, 2022. Making Landscape Decisions to Meet Net Zero Carbon: Pathways that consider ethics, socio-ecological diversity, and landscape functions. (978-1-912989-14-0)

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DE LA BARREDA-BAUTISTA, B, BOYD DS, LEDGER M, SIEWERT MB, CHANDLER C, BRADLEY AV, GEE D, LARGE DJ, OLOFSSON J, SOWTER A and SJÖGERSTEN S, 2022. Towards a Monitoring Approach for Understanding Permafrost Degradation and Linked Subsidence in Arctic Peatlands Remote Sensing. 14(3), 444

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MARSHALL C, STERK HP, GILBERT PJ, ANDERSEN R, BRADLEY AV, SOWTER A, MARSH S and LARGE DJ, 2022. Multiscale Variability and the Comparison of Ground and Satellite Radar Based Measures of Peatland Surface Motion for Peatland Monitoring Remote Sensing. 14(2), 336

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BRADLEY, A. V., ANDERSEN, R., MARSHALL, C., SOWTER, A. and LARGE, D. J., 2022. Identification of typical ecohydrological behaviours using InSAR allows landscape-scale mapping of peatland condition: Earth Surface Dynamics Earth Surface Dynamics. 10(2), 261-277

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ISLAM MT, BRADLEY AV, SOWTER A, ANDERSEN R, MARSHALL C, LONG M, BOURKE MC, CONNOLLY J and LARGE DJ, 2022. Potential use of APSIS-InSAR measures of the range of vertical surface motion to improve hazard assessment of peat landslide Mires and Peat. 28(21), 19
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Nottingham Geospatial Institute

Nottingham Geospatial Building
The University of Nottingham
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Nottingham, NG7 2TU

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