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Control Systems Engineering Phd Jobs (NOW HIRING)

Collaborate with operations, engineering, IT/cybersecurity, energy-market personnel, vendors, utilities, and other external partners. Level of Responsibility Control Systems Engineer Independently ...

Control System Design & Engineering*** Define control system requirements for all phases of magnet manufacturing, including **ore processing, chemical extraction, thermal treatment, forming, coating ...

Control System Design & Engineering * Define control system requirements for all phases of magnet manufacturing, including ore processing, chemical extraction, thermal treatment, forming, coating ...

Control Systems Engineer

Milwaukee, WI · On-site

$72K - $84K/yr

Support control system engineering tasks including design development, testing, and system integration. * Assist with installation, startup, commissioning, and troubleshooting of automation systems.

Control Systems Engineer - Refinery Automation Location: Billings, Montana Industry: Refining ... Bachelor's degree in Chemical Engineering, Electrical Engineering, Computer Engineering, Computer ...

Control Systems Engineer - Refinery Automation Location: Billings, Montana Industry: Refining ... Bachelor's degree in Chemical Engineering, Electrical Engineering, Computer Engineering, Computer ...

$76K - $105K/yr

What You Will Do Control Systems Engineering & Technical Leadership * Lead and support hardware and software design, development, integration, and testing of control systems * Demonstrate self ...

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Control Systems Engineering Phd information

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$61K

$108.8K

$175.5K

How much do control systems engineering phd jobs pay per year?

As of Sep 11, 2026, the average yearly pay for control systems engineering phd in the United States is $108,776.00, according to ZipRecruiter salary data. Most workers in this role earn between $84,000.00 and $126,500.00 per year, depending on experience, location, and employer.

What is a control systems engineering PhD?

Control Systems Engineering PhDs are advanced degree holders who specialize in the analysis, design, and implementation of systems that control dynamic processes. They apply principles from electrical, mechanical, and computer engineering to create automated systems for industries such as manufacturing, robotics, aerospace, and automotive. Their research often focuses on developing new algorithms, improving system stability, and enhancing efficiency and safety in automated processes. Graduates with this degree typically work in academia, research institutions, or high-tech industries.

What are typical research and collaboration opportunities for a control systems engineering PhD within industry or academia?

As a Control Systems Engineering PhD, you may engage in interdisciplinary research projects that intersect with fields such as robotics, automation, and artificial intelligence. In industry, collaboration often involves working closely with teams of engineers and data scientists to design and optimize control algorithms for complex systems like manufacturing processes or autonomous vehicles. In academic settings, you can expect to collaborate with faculty, students, and external partners on funded research grants, publish findings, and present at conferences. These roles provide excellent opportunities to build a professional network, advance technical expertise, and potentially transition into leadership or principal investigator positions over time.

What are the key skills and qualifications needed to thrive as a control systems engineering PhD, and why are they important?

To thrive as a Control Systems Engineering PhD, you need advanced knowledge in control theory, systems modeling, and mathematics, typically supported by a doctoral degree in engineering or a related field. Familiarity with technical tools such as MATLAB, Simulink, LabVIEW, and experience with simulation software and programming languages like Python or C++ are commonly required. Strong analytical thinking, problem-solving abilities, and effective communication skills set standout candidates apart. These skills and qualifications are vital for designing, analyzing, and optimizing complex systems across industries, ensuring innovation and robust solutions to engineering challenges.

What is the difference between Control Systems Engineering Phd vs Control Systems Engineer?

AspectControl Systems Engineering PhdControl Systems Engineer
Required CredentialsDoctorate (PhD) in Control Systems or related fieldBachelor's or Master's degree in Engineering or related field
Work EnvironmentResearch labs, academia, advanced R&D departmentsIndustrial settings, manufacturing, automation projects
Employer & Industry UsageUniversities, research institutions, high-tech companiesManufacturers, aerospace, automotive, automation firms

The Control Systems Engineering Phd typically focuses on research, development, and advanced analysis, often in academia or R&D. In contrast, a Control Systems Engineer applies engineering principles to design, implement, and maintain control systems in industrial environments. Both roles require knowledge of control theory, but the Phd emphasizes research and innovation, while the engineer role emphasizes practical application and system integration.

What are popular job titles related to Control Systems Engineering Phd jobs?

For Control Systems Engineering Phd jobs, the most frequently searched job titles are:

Infographic showing various Control Systems Engineering Phd job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 1% As Needed, 84% Full Time, 10% Part Time, 3% Contract, and 1% Nights. Highlights an 86% Physical, 2% Hybrid, and 12% Remote job distribution, with an average salary of $108,776 per year, or $52.3 per hour.

Control Systems Engineer

Moses Lake, WA • On-site

Full-time

Posted 22 days ago


Key responsibilities

  • Configure, maintain, troubleshoot, and enhance energy accounting and related operational applications supporting a 24x7 utility environment.

  • Support data flows between energy accounting systems, EMS, operational systems, data historians, scheduling/tagging applications, and third-party data sources.

  • Investigate and resolve application, database, telemetry, communications, data-exchange, and system integration issues.


Job description

Control Systems Engineer – Energy Accounting

We are seeking a Control Systems Engineer – Energy Accounting to support critical applications and data systems used in electric utility operations. This role sits at the intersection of utility operations, control systems, software applications, databases, and energy accounting.

The position may be filled at the Control Systems Engineer or Senior Control Systems Engineer level based on experience.

Key Responsibilities

  • Configure, maintain, troubleshoot, and enhance energy accounting and related operational applications supporting a 24x7 utility environment.
  • Maintain application interfaces, displays, data fields, reports, and configurations to improve data accuracy, usability, and operational effectiveness.
  • Investigate and resolve application, database, telemetry, communications, data-exchange, and system integration issues.
  • Support data flows between energy accounting systems, EMS and operational systems, data historians, scheduling/tagging applications, and third-party data sources.
  • Plan and implement application updates, patches, upgrades, and configuration changes while maintaining system availability and data integrity.
  • Support utility energy scheduling, tagging, transmission, market, and electronic data-exchange applications.
  • Use SQL and related tools to investigate data issues, support reporting, validate information, and provide compliance evidence.
  • Develop, maintain, or modify custom applications and interfaces when commercial solutions do not fully meet operational requirements.
  • Participate in software testing, code reviews, source control, change management, and application lifecycle activities.
  • Troubleshoot application and network communications using tools such as Wireshark or comparable technologies.
  • Maintain technical documentation, operating procedures, troubleshooting guides, configuration records, and system support practices.
  • Support cybersecurity and regulatory compliance activities for critical utility systems, including change documentation, patching, failover testing, configuration management, and applicable NERC CIP requirements.
  • Collaborate with operations, engineering, IT/cybersecurity, energy-market personnel, vendors, utilities, and other external partners.

Level of Responsibility

Control Systems Engineer

Independently supports and maintains energy accounting applications, interfaces, databases, and associated data exchanges. Troubleshoots operational and application issues, performs system updates and configuration changes, responds to data requests, supports compliance activities, and develops expertise in interconnected utility control, accounting, and market systems.

Senior Control Systems Engineer

Provides advanced technical ownership of energy accounting systems and integrations. Leads complex troubleshooting, application upgrades, configuration changes, testing, code reviews, and technical coordination. Supports custom software and interfaces, diagnoses cross-system data and communications issues, leads configuration of energy scheduling/tagging applications, assists with vendor and contractor coordination, and mentors less-experienced team members.

Qualifications

Candidates should bring a combination of the following qualifications, with experience appropriate to the level of the position:

  • Bachelor's degree in Engineering, Engineering Technology, or a related technical discipline; additional relevant experience may be considered in lieu of a degree.
  • Control Systems Engineer: approximately 3+ years of experience maintaining applications or systems supporting critical 24x7 operations.
  • Senior Control Systems Engineer: approximately 6+ years of relevant experience, including significant experience supporting energy accounting, energy scheduling/tagging, or comparable utility applications.
  • Experience with energy accounting, utility scheduling/tagging, EMS, operational data historians, or related utility systems is highly desirable.
  • Knowledge of relational databases and SQL for troubleshooting, analysis, reporting, and system support.
  • Understanding of application development, system integration, client-server architecture, services/APIs, and software engineering practices.
  • Programming or application-support experience with technologies such as .NET, Java, JavaScript, HTML/CSS, C++, or similar technologies.
  • Experience with source-control tools such as Git or comparable platforms.
  • Understanding of network and application communications; experience with packet-analysis tools is beneficial.
  • Knowledge of NERC standards, NERC CIP, cybersecurity controls, patch management, change management, and regulatory compliance is preferred.
  • Utility experience and knowledge of energy markets are highly desirable.
  • Strong troubleshooting, analytical, technical documentation, communication, and cross-functional collaboration skills.
  • EIT or PE credentials are beneficial but not required.

Ideal Candidate

A strong candidate will understand how operational power-system data moves between control systems, telemetry, data historians, energy accounting applications, scheduling/tagging platforms, and external data exchanges.

This position is particularly well suited to an engineer who enjoys solving problems that cross traditional boundaries between utility operations, software applications, databases, networking, and operational technology.



Requirements:
  • Bachelor's degree in Engineering, Engineering Technology, or a related technical discipline; additional relevant experience may be considered in lieu of a degree.
  • Control Systems Engineer: approximately 3+ years of experience maintaining applications or systems supporting critical 24x7 operations.
  • Senior Control Systems Engineer: approximately 6+ years of relevant experience, including significant experience supporting energy accounting, energy scheduling/tagging, or comparable utility applications.
  • Experience with energy accounting, utility scheduling/tagging, EMS, operational data historians, or related utility systems is highly desirable.
  • Knowledge of relational databases and SQL for troubleshooting, analysis, reporting, and system support.
  • Understanding of application development, system integration, client-server architecture, services/APIs, and software engineering practices.
  • Programming or application-support experience with technologies such as .NET, Java, JavaScript, HTML/CSS, C++, or similar technologies.
  • Experience with source-control tools such as Git or comparable platforms.
  • Understanding of network and application communications; experience with packet-analysis tools is beneficial.
  • Knowledge of NERC standards, NERC CIP, cybersecurity controls, patch management, change management, and regulatory compliance is preferred.
  • Utility experience and knowledge of energy markets are highly desirable.
  • Strong troubleshooting, analytical, technical documentation, communication, and cross-functional collaboration skills.
  • EIT or PE credentials are beneficial but not required.