AMERGINT Technologies, Inc. — Department of Defense SBIR Phase I: ABSTRACT: Legacy satellite command and control Front-End Processors (FEPs) are constructe

AMERGINT Technologies, Inc. — SBIR Phase I award from Department of Defense.

Amount
$148,309
Agency
Department of Defense · Air Force
Program / Phase
SBIR · Phase I
Solicitation
2013.1
NAICS
Place of performance
CO
Period
2013-08-15 → 2014-05-15

Description

ABSTRACT: Legacy satellite command and control Front-End Processors (FEPs) are constructed using largely monolithic architectures, making deployed baseline changes difficult. This rigidity creates restrictions and limits current TT & C mission capability and prevents increases in data throughput required by both large-scale satellite programs, CubeSat, and ORS missions. Many FEPs are comprised of dedicated hardware and firmware units built on proprietary platforms, requireing dedicated processors. System modifications are complicated by firmware timing constraints, hardware change complexity, and custom Graphical User Interfaces making them difficult to adapt to changing requirements. Today"s ground telemetry processing centers require increasing data throughput with the ability to meet real-time demands of processing multiple telemetry. Users need the ability to modify processing streams with OR without involving vendor personnel. These systems must be capable of being completely software-defined and deployed on Commercial Off-The-Shelf servers. Our Phase 1 proposal builds on our softFEP architecture and product foundation. We propose to gather and evaluate requirements in the areas of customer reconfigurability of FEP functions, code-generation of software devices into T & C functions and building virtual-machine based training and simulation for control centers. The effort concludes with a demonstration of the additional capability integrated with softFEP. BENEFIT: The benefits of exercising Phase 1 proposed initiative results in software-defined FEPs that are modifiable by end-user technical personnel without the need of detailed software knowledge. This initiative also provides the construct and tools for site implementation of smaller T & C systems for CubeSat type missions. Execution of this proposal also results in the enhancement of satellite and ground system emulation for environment simulation and training. These benefits have direct applicability into the commercial control center and satellite test markets.