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REMOTE SENSING SOLUTIONS, INC. SBIR Phase I Award, August 2020

A SBIR Phase I contract was awarded to REMOTE SENSING SOLUTIONS, INC. in August, 2020 for $124,936.0 USD from the NASA.

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Contents

sbir.gov/node/1882189
Is a
SBIR/STTR Awards
SBIR/STTR Awards

SBIR/STTR Award attributes

SBIR/STTR Award Recipient
REMOTE SENSING SOLUTIONS, INC.
REMOTE SENSING SOLUTIONS, INC.
0
Government Agency
NASA
NASA
0
Award Type
SBIR0
Contract Number (US Government)
80NSSC20C04170
Award Phase
Phase I0
Award Amount (USD)
124,9360
Date Awarded
August 21, 2020
0
End Date
March 1, 2021
0
Abstract

.Remote Sensing Solutions (RSS) proposes will develop the next generation ultra-wideband, low power, high fidelity software defined radar/radiometer receiver and signal processor that will be designed for spaceflight applications. This technology and product will enable combined radar-radiometer missions at reduced power, cost, size and weight while enabling multi-mode operation to address multiple objectives from a single platform. With ability to detect and adapt to RFI, it will overcome the ever increasing RFI problem faced by spaceborne radiometers and it provide synchronous and RFI interference migitation techniques to allow the radar and radiometer to share common RF hardware resulting in significant size, weight and power savings enabling deployment on SmallSATs.nbsp; Its adaptive pulse-to-pulse reconfigurable architecture will enable for a new paradigm in adaptive active / passive sensing with the ability to cue one another to optimize the mission capabilities and power resources.nbsp; Based on commercial parts with high radiation tolerance, this system will offer an affordable solution that can be deployed on manned and unmanned aircraft and directly transferred to space as the overall system capabilities are proven, offering a means to lower cost to space and provide a rapid development path. The key innovations are: ultra-wide bandwidth operations to support next generation radiometers; high dynamic range to support radar applications; embedded real-time intelligent RFI mitigation, direct sampling into C-band to reduce RF hardware and provide frequency plans for instruments into millimeter wave bands; high resolution spectral and radar signal processing; and modular and reconfigurable architecture to support broad range of instruments and applications

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