ATEI has the depth of experience in a wide range of key areas of RF systems, RF sensors, RF communication, airborne ISR/Strike vehicle, system and subsystems. ATEI is a small disadvantaged minority-owned business established in 2008 which offers systems engineering products and services in strategic planning for technology programs/activities (SIN 871-1); concept development & requirements analysis (SIN 871-2); system design, engineering & integration (SIN 971-3); and test & evaluation (SIN 871-4). ATEI employs a disciplined systems engineering methodology/process of requirements analysis, functional analysis/allocation, synthesis, and systems analysis and control (as shown in the figure below) progressively throughout the effort to achieve contractual objectives and to define requirements, designs, and solutions for the system life cycle to satisfying our customers' needs.
Mission and operational concept of operation (CONOPS); Application Specific Requirement Analysis, Functional Analysis; Synthesis & Design, and Architectures; Analysis & Control; System, subsystem, & component Trade Studies; Configuration Design and Concept Development; Performance Analysis & Measurement.
End-to-end systems engineering of Active phased array-based technology, architecture and systems; Radar and SSR systems for airborne, ground, and sea-based applications; Signals Intelligence (SIGINT) for airborne, ground, and sea-based applications; Light Detection and Ranging (LIDAR) systems for airborne based applications; Information Operations systems for airborne based applications; Electronic Warfare (EW) / Electronic Attack (EA) systems for airborne, ground, and sea-based applications; RF communication for the airborne, ground, sea, and space-based applications; RF/Optical Hybrid communication for airborne, ground and sea-based applications; EM Phenomenology (near/far-field modelling, simulation and analyses) of RF sensors, antennas and platforms for airborne, ground, sea and space-based applications; RF co-site interference & mitigation for airborne, ground, sea and space-based applications.
Systems Integration: Configuration Design; Sensitivity Analysis; Trade Studies; Synthesis Modeling; Design for RF/IR Low Observability (LO); Design for Low Probability of Intercept (LPI)
Surface Lofting, Subsystem Packaging and Layout, Payload and RF Sensors Systems Integration:
RF Missile Fuse; RF Seeker; Radar; and RF Systems, EM Phenomenology (near/far-field modelling, simulation and analyses), RF (co-site interference/mitigation, Antenna Gain/Coverage, Communication, RF sensors)
Parasitic Drag (subsonic, transonic to supersonic), Lift Induced Drag: Vortex Lattice Code Analysis (Surface Deflection Studies, Stability and Control), Trim Drag Routines (MATLAB), Missile DATCOM
Wind Tunnel Planning, Model Development and Execution, Control Surface Deflections, Hinge Moment Analysis/Flat Panel Analysis, Actuator Sizing Analysis, Total Alpha-Phi Wind Sweeps, Tail Sizing, Capture Analysis (Roll/Despin, Lateral Capture)
6-DOF Flight Mechanics Modeling (6-component aero modelling body axis coeffs CA, CY, CN, Cl, Cm, Cn + Rate Damping Clp, Cmq, Cnr, Mass, Center of Mass and Principal Moments of Inertia (M, CM, Ixx, Iyy, Izz)), Simulation Verification by Flight Test
Instrumentation, Telemetry, Stability and Control, Static and Dynamic Mode Performance, Flight Envelope Characterization, Test Card Matrix Development, Weather Planning, Logistics, Personnel, Scheduling, Pilot Prep, Range Safety, Test Cards, Emergency Procedures, Checklists, Deliverables, Best Practices
P.O. Box 2275, Minneapolis, MN 55337
Office Phone: (952) 435-5805 | Email: inquiry@advtecheng.com CAGE: 52NP9; DUNNS: 825606457; SMO: 52NP94; JCO: 0056956; NAICS: 54133; SIC: 8711