Hollywood, Florida, United States
Objective: To obtain a stimulating position concerning software engineering where I can apply my diverse background of computer science, computer engineering and product marketing while continuing to develop professionally.
• Designed and supported microservices to perform ETL operations and transfer data securely • Implemented systematic analysis methods for Automatic Target Recognition machine-learning-based algorithms • Engineered simulation software of system hardware as well as plane navigation capabilities to upgrade quality of operator training and engineering and testing thus reducing cost and money for flight tests • Built motion imagery services for enterprise web app as full-stack developer on agile team • Engineered simulation software to assist in operator training and development efforts on radar • Improved embedded software for radar mode algorithms on Operational Flight Program (OFP)
• Developed and verified silent installation process for multiple versions of Studio 5000. • Improved user experience and code maintainability of network configuration tool. • Investigated cloud computing for company software.
• Systematically organized and analyzed results of a survey on optimizing software updates/releases. • Built a virtual infrastructure on VMware ESXi server comprised of a variety of virtual machines. • Studied and evaluated the functionality, installation and arrangement of Studio 5000 Tools. • Conducted proof of concept for social media integration into company software.
• Expedited the transition and revision of the ETAdirect English documentation from .doc content to DITA topics, concepts, images and links in for English, Spanish and Portuguese product versions. • Tested and assessed the customer experience of the new SaaS dot release of ETAdirect.
• Finished in second place (awarded monetary compensation by Shell Oil Corporation). • Competed against 70 teams to design, engineer, program and document a sophisticated autonomous robot using a microcontroller (MIT Handy Board), motors, sensors and building materials within a cost-effective budget to navigate an obstacle course complete with rigorous mission objectives.