Zobrazeno 1 - 10
of 22
pro vyhledávání: '"Ninoslav Majurec"'
Autor:
Dmitry Strekalov, Ninoslav Majurec, Andrey Matsko, Vladimir Ilchenko, Simone Tanelli, Razi Ahmed
Publikováno v:
Sensors, Vol 22, Iss 3, p 804 (2022)
We introduce an RF-photonics receiver concept enabling the next generation of ultra-compact millimeter wave radars suitable for cloud and precipitation profiling, planetary boundary layer observations, altimetry and surface scattering measurements. T
Externí odkaz:
https://doaj.org/article/65bf5e09ebef458c88c46dc5cf8cb093
Autor:
Alexander Wineteer, Dragana Perkovic-Martin, Raquel Monje, Ernesto Rodríguez, Tamás Gál, Noppasin Niamsuwan, Fabien Nicaise, Karthik Srinivasan, Chad Baldi, Ninoslav Majurec, Bryan Stiles
Publikováno v:
Remote Sensing, Vol 12, Iss 6, p 1021 (2020)
Ocean surface winds and currents are tightly coupled, essential climate variables, synoptic measurements of which require a remote sensing approach. Global measurements of ocean vector winds have been provided by scatterometers for decades, but a syn
Externí odkaz:
https://doaj.org/article/99bb79843ed9465d944ec681683b1143
Autor:
Razi Ahmed, Ninoslav Majurec, Dmitry Strekalov, Vladimir Ilchenko, Andrey Matsko, Simone Tanelli
Publikováno v:
IGARSS 2022 - 2022 IEEE International Geoscience and Remote Sensing Symposium.
Autor:
Samuel Prager, Zahra Forootaninia, Michael Tope, Karthik Srinivasan, Ninoslav Majurec, Shashank Joshil, Razi Ahmed, Peter H. Mao
Publikováno v:
2021 IEEE Aerospace Conference (50100).
Terminal Descent Radars (TDR), or landing radars, have been an integral element of Guidance, Navigation and Control (GN&C) sensor suites of robotic exploration missions to the Moon and Mars. As plans for new, exciting exploration missions to the Moon
Publikováno v:
IEEE Transactions on Geoscience and Remote Sensing. 52:5320-5332
A comparison of model predictions with measurements of near-nadir normalized radar cross sections (NRCSs) of the sea surface at Ku- and Ka-bands is reported. Measurements of Airborne Precipitation Radar Second Generation (APR-2) from near nadir to 25
Autor:
Lamar Westbrook, Mark T. Frankford, Joel T. Johnson, James Park, Ninoslav Majurec, Graeme Smith, Kyle B. Stewart
Publikováno v:
IEEE Transactions on Aerospace and Electronic Systems. 50:2164-2175
Radar observations of human activities have a variety of applications in security, defense, and rescue operations. Range-Doppler signatures of human motions are a useful tool for retrieving information on observed activities but require an understand
Publikováno v:
IEEE Transactions on Aerospace and Electronic Systems. 50:1569-1577
Spatially diverse multiple-input multiple-output (MIMO) radar systems combine multistatic measurements of the target under view into a single detection algorithm and are thereby expected to alleviate the effects of fading on target radar cross sectio
A Study of Sea Surface Wind Vector Estimation From Near-Nadiral Cross-Track-Scanned Backscatter Data
Publikováno v:
IEEE Geoscience and Remote Sensing Letters. 10:1503-1506
The possibility of recovering sea surface wind vectors from near-nadiral cross-track Ku- or Ka-band backscatter measurements using a measuring geometry similar to that of the Airborne Precipitation Radar 2 is discussed. The cross-track scanning geome
Autor:
James Park, Ninoslav Majurec, Simon Yueh, Priscilla N. Mohammed, Christopher S. Ruf, Jeffrey R. Piepmeier, Sidharth Misra, Steven J. Dinardo, Joel T. Johnson, N. Niamsuwan
Publikováno v:
IEEE Transactions on Geoscience and Remote Sensing. 49:3359-3370
Statistics of radio frequency interference (RFI) observed in the band 1398-1422 MHz during an airborne campaign in the United States are reported for use in analysis and forecasting of L-band RFI for microwave radiometry. The observations were conduc
Publikováno v:
2014 IEEE Radar Conference.
The construction and testing of a MIMO radar for target imaging are presented. Two distinct radar systems are combined in order to form a four-channel platform with operation validated through a series of stationary target measurements. These are con