Spaceborne radar measurements of vertical rainfall velocity: the non-uniform beam filling considerations
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Engineering topics
Publications and source records attributed to Im, E..
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In this paper, the characteristics of the Doppler power spectrum observed by a spaceborne precipitation radar, under on Uniform Beam Filling (NUBF) condion will be presented, and the expected performance of some standard Doppler estimators and that of a new inversion technique will be investigated and compared.
In this paper, we will present the system design and the expected performance of this instrument, as well as the state-of-the-art millimeter-wave technologies employed by this instrument.
This paper surveys the technologies for the PR-2 and describes the developments in the areas of: membrane antennas with inflatable structure, Ka-band phased arrays, and real time digital pulse compression.
This paper studies the performance of a spaceborne precipitation radar in measuring vertical Doppler velocity of rainfall.
A spaceborne radar for atmospheric observation must be able to detect atmospheric backscatter in the presence of clutter from the surface, due to antenna sidelobes.
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In the paper, we will present a system concept for a second-generation spaceborne precipitation radar (PR-2) for operations at the Low Earth Orbit (LEO).
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We examined the feasibility of retrieving ocean surface winds from TRMM PR data for the benefit of surface reference technique.
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