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Automation Risk Analysis

Will “Unmanned Aerial Systems Pilot (UAS Pilot)” be Automated?

Historical Context: Oxford Study (2013)

Ranked #444 of 702. Estimated risk: 81.0%

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AI Exposure Risk

34%

“Unmanned Aerial Systems Pilot (UAS Pilot)” will probably not be replaced by AI.

Based on the cognitive demands, communication requirements, and logical reasoning intrinsic to this occupation according to O*NET data, we project a 34% probability of disruption by generative AI and Large Language Models.

Automation & Robot Risk

54%

“Unmanned Aerial Systems Pilot (UAS Pilot)” will maybe be replaced by robots.

Evaluating the physical dexterity, repetitive motion tasks, and manual labor associated with this role, our analysis indicates a 54% likelihood of substitution by advanced robotics systems.

Personal & Financial Insights

Every occupation has a unique profile. For Electro-Mechanical and Mechatronics Technologists and Technicians, the Bureau of Labor Statistics and O*NET classify the day-to-day work broadly as: Operate, test, maintain, or adjust unmanned, automated, servomechanical, or electromechanical equipment. May operate unmanned submarines, aircraft, or other equipment to observe or record visual information at sites such as oil rigs, crop fields, buildings, or for similar infrastructure, deep ocean exploration, or hazardous waste removal. May assist engineers in testing and designing robotics equipment.

Avg. Annual Salary $75,710
Avg. Hourly Wage $36.40
Available Jobs (US) 14,680
Job Title & Hierarchy Code (SOC) Electro-Mechanical and Mechatronics Technologists and Technicians #17-3024
Wage vs. National Median
ℹ️

Data is based on the reference occupation: “Electro-Mechanical and Mechatronics Technologists and Technicians”

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Core Skills & Abilities

  • Analyze engineering designs of logic or digital circuitry, motor controls, instrumentation, or data acquisition for implementation into new or existing automated, servomechanical, or other electromechanical systems.

  • Select electromechanical equipment, materials, components, or systems to meet functional specifications.

  • Inspect parts for surface defects.

  • Develop, test, or program new robots.

  • Specify, coordinate, or conduct quality-control or quality-assurance programs and procedures.

  • Identify energy-conserving production or fabrication methods, such as by bending metal rather than cutting and welding or casting metal.

  • Fabricate or assemble mechanical, electrical, or electronic components or assemblies.

  • Establish and maintain inventory, records, or documentation systems.

  • Modify, maintain, or repair electrical, electronic, or mechanical components, equipment, or systems to ensure proper functioning.

  • Align, fit, or assemble component parts, using hand or power tools, fixtures, templates, or microscopes.

  • Train others to install, use, or maintain robots.

  • Install or program computer hardware or machine or instrumentation software in microprocessor-based systems.

  • Assist engineers to implement electromechanical designs in industrial or other settings.

  • Consult with machinists to ensure that electromechanical equipment or systems meet design specifications.

  • Operate metalworking machines to fabricate housings, jigs, fittings, or fixtures.

  • Conduct statistical studies to analyze or compare production costs for sustainable and nonsustainable designs.

  • Install electrical or electronic parts and hardware in housings or assemblies, using soldering equipment and hand tools.

  • Test performance of electromechanical assemblies, using test instruments such as oscilloscopes, electronic voltmeters, or bridges.

  • Develop or implement programs related to the environmental impact of engineering activities.

  • Repair, rework, or calibrate hydraulic or pneumatic assemblies or systems to meet operational specifications or tolerances.

  • Prepare written documentation of electromechanical test results.

  • Produce electrical, electronic, or mechanical drawings or other related documents or graphics necessary for electromechanical design, using computer-aided design (CAD) software.

  • Read blueprints, schematics, diagrams, or technical orders to determine methods and sequences of assembly.

  • Translate electromechanical drawings into design specifications, applying principles of engineering, thermal or fluid sciences, mathematics, or statistics.

  • Select and use laboratory, operational, or diagnostic techniques or test equipment to assess electromechanical circuits, equipment, processes, systems, or subsystems.

  • Operate, test, or maintain robotic equipment used for green production applications, such as waste-to-energy conversion systems, minimization of material waste, or replacement of human operators in dangerous work environments.

  • Verify part dimensions or clearances to ensure conformance to specifications, using precision measuring instruments.

  • Determine whether selected electromechanical components comply with environmental standards and regulations.

Technologies & Software

  • PTC Creo Parametric
  • AutoCAD AI
  • Linux
  • Programmable logic controller PLC software
  • Microsoft Access
  • Human machine interface HMI software
  • UNIX
  • Rapid prototyping software
  • National Instruments Multisim
  • Pix4D software
  • Autodesk Inventor
  • Gemini Code Assist
  • MindJet MindManager
  • C++
  • Microsoft Office software
  • Microsoft Word
  • National Instruments LabVIEW
  • Autodesk AI
  • Airdata
  • MathWorks Simulink
  • Operating system software
  • Microsoft Outlook
  • Pix4D Pix4Dcapture
  • National Instruments Ultiboard
  • Oracle Agile Product Lifecycle Management PLM
  • ESRI ArcGIS software
  • Manufacturing resource planning MRP software
  • Computer aided design CAD software
  • ANSYS AI Simulation
  • Supervisory control and data acquisition SCADA software
  • Litchi
  • Computerized maintenance management system CMMS
  • GitHub Copilot
  • SAP software
  • ChatGPT (OpenAI)
  • McNeel Rhinoceros 3D
  • UgCS
  • Microsoft Excel
  • CloudCompare
  • Microsoft PowerPoint
  • Dassault Systemes SolidWorks
  • Autodesk AutoCAD
  • The MathWorks MATLAB
  • Automation Studio
  • Motion control software
  • Circuit simulation software
  • Perplexity AI
  • Laser imaging detection and ranging LIDAR system
  • Rockwell RSLogix
  • Python
  • Portable welding equipment
  • Digital oscilloscopes
  • Dynamometers
  • Hex wrenches
  • Desktop computers
  • Digital multimeters
  • Conductivity sensors
  • Selective laser sintering SLS systems
  • Pipe benders
  • Pressure sensors
  • Drill presses
  • Spectrum analyzers
  • Flow meters
  • Fixed wing unmanned aerial vehicles UAV
  • Pneumatic electric converters
  • Thermocouples
  • Impact testers
  • Hyperspectral imaging equipment
  • X-Y positioning tables
  • Socket wrench sets
  • Three-dimensional prototyping printers
  • Programmable logic controllers PLC
  • Open end wrenches
  • Digital cameras
  • Coordinate measuring machines CMM
  • Wire strippers
  • Personal computers
  • Hammers
  • Hipot testers
  • Metal inert gas MIG welders
  • Tensile testers
  • Megohmmeters
  • Protective goggles
  • Tungsten inert gas TIG welding equipment
  • Proximity sensors
  • Load cells
  • Laser engravers
  • Thermal cameras
  • DroneDeploy
  • Laptop computers
  • Optical comparators
  • Multispectral imaging equipment
  • Three dimensional laser scanners
  • Screwdrivers
  • Laser alignment tools
  • Voltmeters
  • Computerized numerical control CNC machining centers
  • Digital tachometers
  • Force gauges
  • Soldering equipment
  • Function generators
  • Heat treatment furnaces
  • Multi-rotor unmanned aerial vehicles UAV
  • Pipe threading machines
  • Laser printers
  • Analog oscilloscopes
  • Measuring tapes
  • Hardness testers
  • Direct current DC power supplies
  • Computerized numerical control CNC lathes
  • Oscilloscopes
  • Robotic welders
  • Manual mills
  • Potentiometers
  • Framing squares
  • Pressure gauges
  • Iron workers
  • Machining centers

Alternative Job Titles