Michael Cupples
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Michael Cupples Email & Phone Number

Principal Systems Engineer at FibrX
Location: Sandpoint, Idaho, United States 5 work roles 6 schools
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Current company
Role
Principal Systems Engineer
Location
Sandpoint, Idaho, United States

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Michael Cupples is listed as Principal Systems Engineer at FibrX, based in Sandpoint, Idaho, United States. AeroLeads shows a matched LinkedIn profile for Michael Cupples.

Michael Cupples previously worked as Principal Systems Engineer at Raytheon Missiles & Defense and Sr. Systems Engineer at Saic. Michael Cupples holds Advanced Python Programming And Software Development, Final Project...No Grade Given from Powerful Python.

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FibrX

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About Michael Cupples

Summary: I am a principal systems engineer and data analyst with extensive experience in Modeling-Simulation-and-Analysis, Systems Engineering, and Flight Test Performance Verification; I stand out in the areas of Modeling-Simulation-and-Analysis, Data Analysis and Analysis Tool Development, developing and using Six-Degrees-of-Freedom (6-DOF) simulations for use in System Test Performance Verification and Software Development to support Hardware Integration Test. Skills: Modeling-Simulation-and-Analysis, Systems Engineering, and Software Development in a collaborative environment.Languages: Python & R (general programming, data analysis, statistics, Pandas, NumPy, SciPy), C/C++, MATLAB/Simulink, FORTRAN. Operating Systems: Windows and LINUX. Domains: Flight Mechanics & Trajectory Optimization, Software/Hardware Integration, and Flight Systems Performance Verification (all-digital and HIL). Collaboration and Development Tools: Windows Studio & Eclipse, Subversion and Git. Other Skills: As a lead on various projects: planning/budgeting, team building, mentoring, leading projects to completion on-time and within budget, project road mapping, and risk management.Flight Mechanics Tools: Various in-house Raytheon tools, OTIS, STK Astrogator, GMAT, MIDAS, MAnE, SEPTOP, and personally developed Trajectory & Orbital Optimization Tools.Experience:Post Retirement Studies (September 2018 – Current):• Completed Powerful Python Bootcamp. (2024)• Completed Datacamp Python Programmer Career Track (Update for 2024)• Completed Python Data Analyst Career Track (2023)• Partially completed Datacamp Career Tracks: Python Data Scientist; R Programmer, R Data Analyst, and R Statistician. See https://www.datacamp.com/about • Developed further facility in Simulink modeling fluid dynamics problems.Principal Systems Engineer, Raytheon Missile Systems, Tucson AZ (January 2007 – September 2018 = retired):Sr Systems Engineer, Science Applications International Corporation, Huntsville AL, (February 2000 – January 2007):Principal Investigator and Systems Engineer, DESE Research, Huntsville AL (April 1996 – February 2000):Education Hiatus, University of AL, Huntsville AL (June 1995 – April 1996):Systems Engineer, The Boeing Company, Huntsville AL (October 1985 – June 1995):Education:Louisiana Tech University, BS Physics and MS Physics

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FibrX
Fibrx
Principal Systems Engineer
Sandpoint, ID, US
AeroLeads page
5 roles

Michael Cupples work experience

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Principal Systems Engineer

Sandpoint, Id, Us

Principal Systems Engineer

Tucson, Arizona, United States

• Lead Modeling-Simulation-and-Analysis Engineer: Team lead for hardware-in-the-loop (HIL) real-time simulation development project and related system hardware integration/test efforts supporting a large multi-system, multi-$100M flight hardware program. Mostly software development activities.• Lead Modeling Simulation & Analysis Engineer: As a Principal Systems Engineer, my assignments for a 600-million-dollar program included developing and maintaining a simulation modernization road map… Show more • Lead Modeling-Simulation-and-Analysis Engineer: Team lead for hardware-in-the-loop (HIL) real-time simulation development project and related system hardware integration/test efforts supporting a large multi-system, multi-$100M flight hardware program. Mostly software development activities.• Lead Modeling Simulation & Analysis Engineer: As a Principal Systems Engineer, my assignments for a 600-million-dollar program included developing and maintaining a simulation modernization road map covering a set of 20 simulations and leading the migration of the simulations into RMS' standard simulation architecture, including the HIL lab. This modernization work provided direct support to chief engineers and program management for critical investment decisions, flight test support, and new system design & development.• Lead Systems Engineer for Simulation Verification and Validation: Using my expertise in flight mechanics, held the lead role in simulation V&V (verification and validation) for several system development efforts. Mostly the V&V work ensured that key simulation models were validated against data/physics while other models were verified against other previously verified models. The overall simulation was then verified against other simulations at the systems level. • Lead Systems Engineer: Modeled a throttling divert and attitude control system, where I took a strong role in model verification with deep external customer interface. Authored the Divert and Attitude Control System (DACS) math model requirements for the system simulation. Developed simulation tools for used for pre-flight test performance predictions and post flight test trajectory matching/performance verification. • Principal Small Satellite System Developer: Design, Performance and Cost of deploying a constellation of small communication satellites in LEO, including launch vehicle trades, communication links, command propagation among constellation, systems configuration/definition. Show less

Jan 2007 - Sep 2018

Sr. Systems Engineer

Huntsville, Alabama, United States

• Lead Systems Engineer for In-Space Propulsion Technology Assessment support to the Marshal Space Flight Center: I led a diverse team of SAIC engineers, university professors, and graduate students in performing optimal mission analyses and propulsion assessment based on simulated missions to solar system destinations. This propulsion assessment work assisted NASA in making critical funding decisions on future NASA in-space propulsion technologies: • Analyzed and critically evaluated low… Show more • Lead Systems Engineer for In-Space Propulsion Technology Assessment support to the Marshal Space Flight Center: I led a diverse team of SAIC engineers, university professors, and graduate students in performing optimal mission analyses and propulsion assessment based on simulated missions to solar system destinations. This propulsion assessment work assisted NASA in making critical funding decisions on future NASA in-space propulsion technologies: • Analyzed and critically evaluated low and high thrust propulsion technologies and mission concepts for NASA in-space transportation systems. One of the key technology development program efforts focused on performance characterization and assessment for NASA's 2nd Generation Ion Propulsion Project: development of systems engineering tools for performance characterization of electric propulsion engines, power processing units, and propellant management systems associated with NASA's Evolutionary Xenon Thruster (NEXT) development. • Reporting directly to the NASA program office, my team developed and presented analyses results and recommendations to NASA's In-Space Propulsion Technology Project office. The contribution that the modeling, simulation and analyses brought to the NASA customer was the ability to assess relative performance of an array of advanced propulsion systems (advanced chemical, solar electric, solar sail and thermal nuclear, leading to prudent and timely investment decisions by the NASA In-Space Propulsion Program. Show less

Feb 2000 - Jan 2007

Principal Investigator And Systems Engineer

Huntsville, Alabama, United States

• Principal Investigator for a NASA contract defining a Chemical-Aerocapture transportation architecture for human space exploration: ◦ Analyses activities included optimal interplanetary trajectory design, mission analyses including Mars ascent/descent, and over-all exploration architecture assessment for missions to Mars, asteroids, and Earth/Sun-Earth/Moon libration points, providing NASA with critical heavy-lift launch vehicle development decision making data.• Satellite… Show more • Principal Investigator for a NASA contract defining a Chemical-Aerocapture transportation architecture for human space exploration: ◦ Analyses activities included optimal interplanetary trajectory design, mission analyses including Mars ascent/descent, and over-all exploration architecture assessment for missions to Mars, asteroids, and Earth/Sun-Earth/Moon libration points, providing NASA with critical heavy-lift launch vehicle development decision making data.• Satellite interceptor guidance/navigation/control software development; satellite simulation development including visible camera model and general lighting model (earth limb, sun, moon, bright stars); satellite safety-of-flight test analyses, reporting to customer technical departments and management. Show less

Apr 1996 - Feb 2000

System Engineer

Huntsville, Alabama, United States

• Supported Space Transportation Initiative (SEI) vehicle concept development: ◦ Trajectory design for human Lunar and Mars missions, including trajectory optimization.◦ Development of simulation routines for low-thrust interplanetary trajectory design.◦ Trades related to various system configurations: all-chemical, chemical-aerobrake, nuclear electric, nuclear thermal, and solar electric, propellant management systems, radiation shielding, and thermal protection.◦ Mars landing… Show more • Supported Space Transportation Initiative (SEI) vehicle concept development: ◦ Trajectory design for human Lunar and Mars missions, including trajectory optimization.◦ Development of simulation routines for low-thrust interplanetary trajectory design.◦ Trades related to various system configurations: all-chemical, chemical-aerobrake, nuclear electric, nuclear thermal, and solar electric, propellant management systems, radiation shielding, and thermal protection.◦ Mars landing flight mechanics and navigation trade studies. Mars landing guidance routines.◦ Hypersonic descent & landing analyses included landing site access to Mars polar ice caps for lifting-body vehicles, landing site access from optimal Mars parking orbits for lifting-body vehicles, and Mars landings using aero-assisted skip-out maneuvers. ◦ Provided NASA with key propulsion planning data for Lunar and Mars missions associated with the Space Exploration Initiative. Show less

Oct 1985 - Jun 1995
6 education records

Michael Cupples education

Advanced Python Programming And Software Development, Final Project...No Grade Given

Powerful Python

Advanced Python programming and software development skills honed through intense application and cohort group mentoring. Extremely.

Data Science

Data Science : Python Programming and Data Scientist Tracks

FAQ

Frequently asked questions about Michael Cupples

Quick answers generated from the profile data available on this page.

What company does Michael Cupples work for?

Michael Cupples works for FibrX.

What is Michael Cupples's role at FibrX?

Michael Cupples is listed as Principal Systems Engineer at FibrX.

Where is Michael Cupples based?

Michael Cupples is based in Sandpoint, Idaho, United States while working with FibrX.

What companies has Michael Cupples worked for?

Michael Cupples has worked for Fibrx, Raytheon Missiles & Defense, Saic, Dese Research, Inc., and Boeing.

How can I contact Michael Cupples?

You can use AeroLeads to view verified contact signals for Michael Cupples at FibrX, including work email, phone, and LinkedIn data when available.

What schools did Michael Cupples attend?

Michael Cupples holds Advanced Python Programming And Software Development, Final Project...No Grade Given from Powerful Python.

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