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Hypercomp, Inc. STTR Phase II Award, December 2021

A STTR Phase II contract was awarded to Hypercomp, Inc. in December, 2021 for $800,000.0 USD from the U.S. Department of Defense and United States Navy.

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Contents

sbir.gov/node/2238195
Is a
SBIR/STTR Awards
SBIR/STTR Awards

SBIR/STTR Award attributes

SBIR/STTR Award Recipient
Hypercomp, Inc.
Hypercomp, Inc.
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Government Agency
U.S. Department of Defense
U.S. Department of Defense
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Government Branch
United States Navy
United States Navy
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Award Type
STTR0
Contract Number (US Government)
N68335-22-C-01710
Award Phase
Phase II0
Award Amount (USD)
800,0000
Date Awarded
December 21, 2021
0
End Date
July 3, 2023
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Abstract

The capability to model large-scale problems in electromagnetics (problem sizes extending to thousands of wavelengths) using physics-based full wave solvers that employ high-fidelity geometric models and high- order accurate numerical algorithms is a critical technology for several aspects of the DoD warfighter mission.  In particular, a robust and computationally efficient computational electromagnetics (CEM) environment is desired by NAVAIR to accurately predict the EM fields and radiation characteristics of installed antenna arrays coupled with radomes present in many Navy platforms. To meet these goals, HyPerComp has been developing and bringing together various advanced computational technologies in both time-domain (HDphysics-RFT) and frequency-domain (HDphysics-RFF).  Some of them are, 1) high-order, discontinuous Galerkin (DG)-based framework for Maxwell’s equations, 2) high-order curved geometry representation, 3) automatic CAD repair tools and hybrid structured/unstructured gridding, and 4) high-order absorbing outer boundary conditions.  The goal of Phase II is to fully mature the capabilities developed in Phase I and deliver a GUI-driven software package that ensures geometric fidelity is not compromised for the generation of a computational electromagnetics (CEM) mesh formed by high-order curved elements. We will continue developing the master GUI, CEMax that integrates all the advances in preprocessing (CAD import/repair and gridding), processing (CEMprep, HDphysics-RFT and HDphysics-RFF), optimization algorithms, and postprocessing tools (CEM-post), deliver the capabilities to the RACEMM group at NAVIAR, and support their program needs.

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