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Internship Flight Control System Engineer Jobs in Illinois

Senior Control Systems Engineer

Aurora, IL · On-site

$165K - $171K/yr

Senior Control Systems Engineer The Role: Our Aurora, Illinois site is seeking a highly skilled ... internal system commissioning, validation, and acceptance testing Potential for travel (20 ...

Manufacturing System Engineer

Lombard, IL · On-site

$104K - $129K/yr

Support change control, validation, testing documentation, and audit readiness * Collaborate with ... manufacturing systems, controls, or related engineering roles in a regulated manufacturing ...

Manufacturing Systems Engineer Position Summary The Manufacturing Systems Engineer is responsible ... Support change control, validation, testing documentation, and audit readiness * Collaborate with ...

Manufacturing System Engineer

Lombard, IL · On-site

$104K - $129K/yr

Support change control, validation, testing documentation, and audit readiness * Collaborate with ... manufacturing systems, controls, or related engineering roles in a regulated manufacturing ...

Manufacturing System Engineer

Lombard, IL · On-site

$104K - $129K/yr

Support change control, validation, testing documentation, and audit readiness * Collaborate with ... manufacturing systems, controls, or related engineering roles in a regulated manufacturing ...

... with Programmable Logic Controls (PLC) programs * 5+ year of experience with Robotics system ... or in Control Systems development, troubleshooting and programming * 4+ years of experience ...

Internship or co-op experience in power systems, utilities, or engineering consulting * Familiarity with tools such as AutoCAD, ETAP, or SKM (preferred but not required) Education Bachelor's Degree ...

Showing results 41-60

Internship Flight Control System Engineer information

What does an internship flight control system engineer do?

An Internship Flight Control System Engineer assists with the design, development, testing, and evaluation of aircraft flight control systems under the guidance of experienced engineers. Responsibilities typically include supporting simulation, analysis, and troubleshooting of control system components, as well as participating in integration and validation activities. Interns often learn to work with advanced software tools and hardware while gaining hands-on experience in aerospace engineering environments. This role provides valuable exposure to the processes and standards used in the aviation industry.

What types of projects and tasks can an internship flight control system engineer expect to work on during their internship?

As an Internship Flight Control System Engineer, you can expect to be involved in a variety of hands-on and collaborative projects. These typically include supporting the design, simulation, and testing of flight control algorithms, assisting with the integration of control systems into aircraft models, and analyzing performance data from test flights. You may also work alongside senior engineers to troubleshoot issues, participate in team meetings, and contribute to technical documentation. This role provides valuable exposure to both the theoretical and practical aspects of aerospace engineering within a dynamic team environment.

What are the key skills and qualifications needed to thrive as an internship flight control system engineer, and why are they important?

To thrive as an Internship Flight Control System Engineer, you generally need a solid foundation in aerospace engineering principles, control systems, and programming, often supported by current enrollment in a relevant engineering program. Familiarity with MATLAB/Simulink, C/C++ programming, and exposure to flight simulation software are typically required. Strong analytical thinking, problem-solving ability, and effective communication skills help you excel in collaborative engineering environments. These skills ensure accurate design, testing, and troubleshooting of flight control systems, contributing to safe and reliable aircraft operations.

What is the difference between Internship Flight Control System Engineer vs Flight Control System Engineer?

AspectInternship Flight Control System EngineerFlight Control System Engineer
QualificationsTypically pursuing or recently completed relevant degree; limited certificationsBachelor's or Master's in aerospace, electrical, or systems engineering; professional certifications preferred
Work EnvironmentInternship programs, supervised, often in research or development labsFull-time, in aerospace companies or research institutions, with project responsibilities
ResponsibilitiesAssisting with design, testing, and analysis under supervisionDesign, develop, and test flight control systems independently or as part of a team

In summary, an Internship Flight Control System Engineer is a trainee gaining hands-on experience, while a Flight Control System Engineer is a professional responsible for designing and maintaining flight control systems in the aerospace industry.

How to become an internship flight control system engineer?

To become an internship flight control system engineer, candidates typically need a bachelor's degree in aerospace engineering, electrical engineering, or a related field. Gaining experience with control systems, programming languages like MATLAB or C++, and understanding of avionics is beneficial; internships or project work in aerospace environments can also improve prospects.

What are the most commonly searched types of Flight Control System Engineer jobs in Illinois?

The most popular types of Flight Control System Engineer jobs in Illinois are:

What cities in Illinois are hiring for Internship Flight Control System Engineer jobs?

Cities in Illinois with the most Internship Flight Control System Engineer job openings:

Engine Control Systems Engineer ( Full-time ) Chillicothe IL - DK

Central Business Solutions, Inc

Chillicothe, IL • On-site

$98 - $120/hr

Other

Re-posted 15 days ago


Job description

Engine Control Systems Engineer ( Full-time ) Chillicothe IL - DK
  • Chillicothe, IL
Role Description:

This role encompasses the design, development, and validation of electro-mechanical systems and mechatronic devices with the aim of optimizing engine performance and emissions. As an individual contributor within the Large Engine Controls team in the Large Power Systems Division (LPSD), you will be responsible for designing, building, and testing control strategies specific to LPSD engines. Working under the direction of technical team leads, you will apply your knowledge of engine systems, dynamic feedback control theory, simulation, and testing to meet customer specifications. Key responsibilities include collaborating with colleagues to refine system requirements, developing and verifying control algorithms through simulation and on-engine testing, as well as comprehensively documenting and presenting results.

What you will do:

Collaborate with process partners to develop and refine engine control system requirements.

Utilize expertise in engines and dynamic feedback controls—including frequency and time domain design, Multi Input Multi Output (MIMO) systems, digital signal processing, filter design, and logical control methodologies to design and evaluate control features.

Develop and maintain Matlab/Simulink and GT-Power-based Model-in-Loop (MiL) simulation framework for use in design and verification of control algorithms.

Analyze and present data using advanced analysis and visualization tools such as Vector CANape, Matlab, and Python.

Deliver timely, high-quality simulation-driven design analyses and provide clear, actionable recommendations to stakeholders.

Education and Experience Requirements:

A Bachelor's degree in Mechanical Engineering or Electrical/Electronics Engineering is required

Professional experience in dynamic feedback control theory applied to design and analysis of spark-ignited engine control systems

Skills you will have:

Analytical Thinking:Working knowledge of techniques and tools that promote effective analysis; ability to determine the root cause of organizational problems and create alternative solutions that resolve these problems.

Communicating Complex Concepts:Working knowledge of effective presentation tools and techniques to ensure clear understanding; ability to use summarization and simplification techniques to explain complex technical concepts in simple, clear language appropriate to the audience.

Problem Solving:Working knowledge of approaches, tools, and techniques for recognizing, anticipating, and resolving organizational, operational, or process problems; ability to apply knowledge of problem solving appropriately to diverse situations.

Embedded Systems:Working knowledge of dynamic feedback control theory, discrete-time embedded systems, digital signal processing, logical control (finite state machines), and physics-based controls design.

Requirements Analysis:Basic understanding of tools, methods, and techniques of requirements analysis; ability to elicit, analyze and record required business functionality and non-functionality requirements to ensure the success of a system or software development project.

Technical Troubleshooting:Basic understanding of technical troubleshooting approaches, tools, and techniques; ability to anticipate, recognize and resolve technical issues on hardware, software, application or operation. Working experience with tools like Matlab/Simulink, Vector CANape, GT-Power, etc., Apply knowledge of engines and control software to troubleshoot issues using fishbone diagrams using MiL and on-engine testing.

Product Development in Manufacturing:Basic understanding of MiL applied to engine controls, tools and techniques; ability to design, build and manage MiL frameworks. Familiarity with NPI, NTI, and CPI process.

Product Testing:Basic understanding of product testing approaches, techniques and tools; ability to design, plan, and execute testing strategies and tactics to ensure product quality at all stages of manufacturing, including MiL and on-engine environments.

Top candidates will possess:

A master's degree in engineering accompanied by professional experience in engine control systems design

Proficiency in classical control theory, specifically as applied to Multiple Input Multiple Output (MIMO) systems using both the time and frequency domain

Demonstrated experience developing engine control systems for gas, diesel, and dual fuel engines, including aftertreatment solutions

Advanced expertise in Matlab/Simulink with a focus on designing and verifying control concepts using GT-Power engine models.

Strong background in modeling dynamic systems through physics-based white box models, black box approaches, and system identification techniques

Exceptional analytical abilities and comprehensive understanding of complex engineering concepts and applications

Proven self-motivation with the capacity to effectively communicate technical concepts to team members, cross-functional groups, management, and external suppliers

Prior involvement in product development processes (NPI, NTI, and CPI)

Additional Information:

This position is Mossville, IL.

Domestic relocation assistance is available for this position.

Visa sponsorship is not available for this position.

Role Description:

This role encompasses the design, development, and validation of electro-mechanical systems and mechatronic devices with the aim of optimizing engine performance and emissions. As an individual contributor within the Large Engine Controls team in the Large Power Systems Division (LPSD), you will be responsible for designing, building, and testing control strategies specific to LPSD engines. Working under the direction of technical team leads, you will apply your knowledge of engine systems, dynamic feedback control theory, simulation, and testing to meet customer specifications. Key responsibilities include collaborating with colleagues to refine system requirements, developing and verifying control algorithms through simulation and on-engine testing, as well as comprehensively documenting and presenting results.

What you will do:
  • Collaborate with process partners to develop and refine engine control system requirements.

  • Utilize expertise in engines and dynamic feedback controls—including frequency and time domain design, Multi Input Multi Output (MIMO) systems, digital signal processing, filter design, and logical control methodologies to design and evaluate control features.

  • Develop and maintain Matlab/Simulink and GT-Power-based Model-in-Loop (MiL) simulation framework for use in design and verification of control algorithms.

  • Analyze and present data using advanced analysis and visualization tools such as Vector CANape, Matlab, and Python.

  • Deliver timely, high-quality simulation-driven design analyses and provide clear, actionable recommendations to stakeholders.

Education and Experience Requirements:
  • A Bachelor's degree in Mechanical Engineering or Electrical/Electronics Engineering is required

  • Professional experience in dynamic feedback control theory applied to design and analysis of spark-ignited engine control systems

Skills you will have:
  • Analytical Thinking:Working knowledge of techniques and tools that promote effective analysis; ability to determine the root cause of organizational problems and create alternative solutions that resolve these problems.

  • Communicating Complex Concepts:Working knowledge of effective presentation tools and techniques to ensure clear understanding; ability to use summarization and simplification techniques to explain complex technical concepts in simple, clear language appropriate to the audience.

  • Problem Solving:Working knowledge of approaches, tools, and techniques for recognizing, anticipating, and resolving organizational, operational, or process problems; ability to apply knowledge of problem solving appropriately to diverse situations.

  • Embedded Systems:Working knowledge of dynamic feedback control theory, discrete-time embedded systems, digital signal processing, logical control (finite state machines), and physics-based controls design.

  • Requirements Analysis:Basic understanding of tools, methods, and techniques of requirements analysis; ability to elicit, analyze and record required business functionality and non-functionality requirements to ensure the success of a system or software development project.

  • Technical Troubleshooting:Basic understanding of technical troubleshooting approaches, tools, and techniques; ability to anticipate, recognize and resolve technical issues on hardware, software, application or operation. Working experience with tools like Matlab/Simulink, Vector CANape, GT-Power, etc., Apply knowledge of engines and control software to troubleshoot issues using fishbone diagrams using MiL and on-engine testing.

  • Product Development in Manufacturing:Basic understanding of MiL applied to engine controls, tools and techniques; ability to design, build and manage MiL frameworks. Familiarity with NPI, NTI, and CPI process.

  • Product Testing:Basic understanding of product testing approaches, techniques and tools; ability to design, plan, and execute testing strategies and tactics to ensure product quality at all stages of manufacturing, including MiL and on-engine environments.

Top candidates will possess:
  • A master's degree in engineering accompanied by professional experience in engine control systems design

  • Proficiency in classical control theory, specifically as applied to Multiple Input Multiple Output (MIMO) systems using both the time and frequency domain

  • Demonstrated experience developing engine control systems for gas, diesel, and dual fuel engines, including aftertreatment solutions

  • Advanced expertise in Matlab/Simulink with a focus on designing and verifying control concepts using GT-Power engine models.

  • Strong background in modeling dynamic systems through physics-based white box models, black box approaches, and system identification techniques

  • Exceptional analytical abilities and comprehensive understanding of complex engineering concepts and applications

  • Proven self-motivation with the capacity to effectively communicate technical concepts to team members, cross-functional groups, management, and external suppliers

  • Prior involvement in product development processes (NPI, NTI, and CPI)

Additional Information:
  • This position is Mossville, IL.

  • Domestic relocation assistance is available for this position.

  • Visa sponsorship is not available for this position.


Skills and Certifications
[note: bold skills and certification are required]
Embedded Systems
Requirements Analysis
Product Development in Manufacturing
Product Testing
Dynamic Feedback Control Theory
Security Clearance Required:No
Visa Candidate Considered:No
Compensation
Base Salary -USD $97,530 to $120,000
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