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Lean Process Adoption and Field Implementation Redesign (Version 2.0)

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Andrew Connor

Project Timeline

May 2025 - Aug-2026

OVERVIEW

Led an 8-person intern team tasked with evaluating and improving adoption of Conti Federal’s standardized lean construction framework across the companies active project sites. The company had established structured tools for subcontractor coordination, inefficiency tracking, and after-action reporting. However, field teams were not consistently implementing them. Our objective was to identify barriers to adoption and design a revised “2.0” framework that aligned executive intent with real-world field execution, improving usability, compliance, and operational effectiveness. NOTE: Due to NDA obligations and federal/military project restrictions, specific project documentation, site details, and internal materials cannot be shared. The information above reflects the scope and technical nature of the work without disclosing sensitive or proprietary content.

HighlightS

SKILLS

Systems AnalysisProcess Failure IdentificationRoot Cause AnalysisWorkflow MappingField Data CollectionStakeholder InterviewingProcess StandardizationCorrective Action DevelopmentChange Implementation StrategyCross-Functional CoordinationTechnical DocumentationLean Construction PrinciplesPerformance Tracking MetricsProcess OptimizationExecutive Presentation Development

ADDITIONAL CONTENTS

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Andrew Connor

Aerospace Engineering Student at University of Central Florida

I am an Aerospace Engineering student at UCF with experience applying engineering fundamentals to real-world systems through manufacturing and quality engineering internships at Conti Federal Services and Adjuvo Technologies. My work has required detailed interpretation of engineering drawings, configuration control, and technical documentation within complex, regulated environments.


I am particularly interested in Guidance, Navigation, and Control, propulsion, and R&D-focused roles where analytical modeling and system-level thinking are critical. I have experience using MATLAB for dynamic system analysis, SolidWorks for CAD and basic FEA, and applying thermodynamics and fluid mechanics principles to engineering problems. Through leadership experience and managing teams, I have developed the ability to translate engineering requirements into executable technical solutions while maintaining precision and accountability.


(Note: All figures and technical materials shown are my own work)