VELEZ ADVANCED SYSTEMS®Advanced Technology + Engineering R&D

Advanced Technology + Engineering R&D

Engineering the next generation of intelligent systems.

Velez Advanced Systems advances semi autonomous robotics, AI assisted engineering, digital engineering, and digital twin technologies through disciplined research, rapid technology maturation, and rigorous systems engineering.

RoboticsAI Assisted EngineeringDigital EngineeringDigital Twins

Mission

Advance the state of semi autonomous robotics, AI assisted engineering, digital engineering, and digital twin technologies through innovative research, rapid technology maturation, and practical solutions that enhance human machine teaming, engineering productivity, and mission effectiveness.

What We Research

Connected technologies across the system lifecycle.

VAS treats physical systems, digital models, AI, data, controls, sensing, verification, and decision support as parts of the same engineered system.

01

Semi Autonomous Robotics

Mechanical systems, gait, sensing, navigation, embedded control, energy, autonomy, and human machine teaming.

Explore robotics research
02

AI Assisted Engineering

Engineering assistance for analysis, assessment, evidence development, traceability, and human reviewed technical workflows.

Explore engineering AI
03

Digital Engineering

Model Based Systems Engineering, digital threads, structured engineering data, semantic integration, and lifecycle evidence.

Explore digital engineering
04

Digital Twins

Data connected models that support analysis, verification, decision support, system understanding, and lifecycle feedback.

Explore digital twins

Latest R&D

Research progresses through modeling, prototyping, measurement, and evidence.

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February 2026

Energy storage and endurance trade studies

Research examined battery buffering, supercapacitors, hydrogen concepts, hybrid power approaches, voltage distribution, and robotic endurance.

Spring 2026

Walking, gait, sensing, and control maturation

Mobility research linked gait sequencing, balance, inertial sensing, actuator coordination, feedback control, and power efficient operation.

Spring to Summer 2026

Sensor fusion and navigation research

Research explored localization, state estimation, navigation, environmental sensing, and closed loop robotic control.

Technology Visuals

Representative public facing views of current VAS research themes.

These visuals are intentionally high level. They communicate the scope of VAS technology development without disclosing proprietary designs, exact architectures, or unpublished technical data.

Robotics research visualization with locomotion, mechanical systems, and gait engineering.

Robotics

Mechanical systems, gait, and autonomy.

Walking, couplings, structural interfaces, actuation, sensing, navigation, and control are engineered together as one integrated robotics system.

AI assisted engineering and digital engineering visualization.

AI + Digital Engineering

Model based engineering supported by AI.

VAS applies AI assisted workflows, structured engineering data, model based methods, and traceability to accelerate disciplined technical work.

Energy systems, sensing, navigation, and control research visualization.

Energy + Sensors

Energy, sensing, navigation, and control.

Battery technologies, hybrid power concepts, sensor fusion, localization, and control architectures are developed to improve endurance and mission performance.

About VAS

Advanced technology with a disciplined engineering foundation.

VAS combines systems engineering experience, digital transformation, complex systems integration, and practical research to bridge the gap between innovation and engineering execution.

Learn About VAS