2010 · 17 citations · 3 references
EngineeringMultispectral ImagingAce MissionEarth ScienceAtmospheric ScienceCalibrationCubesatsInstrumentationSatellite ImagingFlight ValidationPolarization DataSpaceborne Image ProcessingComputer EngineeringCubesat DesignSmall SatelliteVirtex-5 FpgaAerospace EngineeringRemote SensingHigh-accuracy Polarization Imager
The Earth Sciences Decadal Survey identifies a multiangle, multispectral, high-accuracy polarization imager as one requirement for the Aerosol-Cloud-Ecosystem (ACE) mission. JPL has been developing a Multiangle SpectroPolarimetric Imager (MSPI) as a candidate to fill this need. A key technology development needed for MSPI is on-board signal processing to calculate polarimetry data as imaged by each of the 9 cameras forming the instrument. With funding from NASA's Advanced Information Systems Technology (AIST) Program, JPL is solving the real-time data processing requirements to demonstrate, for the first time, how signal data at 95 Mbytes/sec over 16-channels for each of the 9 multiangle cameras in the spaceborne instrument can be reduced on-board to 0.45 Mbytes/sec. This will produce the intensity and polarization data needed to characterize aerosol and cloud microphysical properties. Using the Xilinx Virtex-5 FPGA platform, a polarimetric processing least-squares fitting algorithm is under development to meet MSPI's on-board processing (OBP) requirements. The Virtex-5 FPGA is not yet space-flight qualified; however, an in-flight validation of this technology on a pre-cursor CubeSat mission is valuable toward advancing the technology readiness level for MSPI and the ACE mission. <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">1,2</sup>
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Dual-photoelastic-modulator-based polarimetric imaging concept for aerosol remote sensing
David J. Diner, A. B. Davis, B. Hancock et al. · Applied Optics · 2007 · 119 citations