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Probabilistic Risk Assessment Engineer Jobs in Alabama

Support systems engineering processes, requirements management, interface control, technical risk management, test planning, and verification/validation activities. * Support technical assessments ...

Conduct supply chain risk assessments across critical technologies, suppliers, and programs ... Wellness stipends and employee health programming * Career development support and certification ...

Cybersecurity Engineer

Huntsville, AL ยท Hybrid

$120K - $150K/yr

Dark Wolf Solutions is seeking a Cybersecurity Engineer to will lead and execute the security ... risk assessments, and ensuring that our systems meet the highest standards of security and ...

Cybersecurity Engineer

Huntsville, AL ยท On-site

$120K - $150K/yr

Dark Wolf Solutions is seeking a Cybersecurity Engineer to will lead and execute the security ... risk assessments, and ensuring that our systems meet the highest standards of security and ...

Our team of innovative engineers and scientists is committed to pushing the boundaries of what ... Lead technical decision-making processes, including design trades, risk assessments, and resolution ...

Showing results 41-60

Probabilistic Risk Assessment Engineer information

What is a probabilistic risk assessment engineer?

A Probabilistic Risk Assessment (PRA) Engineer is a professional who evaluates the likelihood and potential consequences of risks in complex systems, often in industries such as nuclear power, aerospace, or chemical processing. They use quantitative methods and statistical models to analyze possible failure scenarios and their impacts, helping organizations make informed decisions about safety and reliability. PRA Engineers play a crucial role in identifying vulnerabilities, recommending risk mitigation strategies, and ensuring compliance with regulatory standards. Their work helps minimize the chances of catastrophic failures and improves overall system safety.

How does a probabilistic risk assessment engineer typically collaborate with other engineering and safety teams during a project?

Probabilistic Risk Assessment Engineers frequently work in multidisciplinary teams, collaborating closely with safety engineers, systems engineers, and project managers to analyze and mitigate potential risks. They provide quantitative risk assessments that inform design decisions, operational procedures, and regulatory compliance efforts. Regular meetings and data-sharing sessions are common, ensuring that risk insights are integrated throughout the project lifecycle. This collaborative environment enables effective communication of complex risk scenarios and fosters a culture of safety and continuous improvement.

What are the key skills and qualifications needed to thrive as a probabilistic risk assessment engineer, and why are they important?

To thrive as a Probabilistic Risk Assessment Engineer, you need a solid background in mathematics, statistics, and engineering principles, generally supported by a degree in engineering or a related field. Familiarity with specialized software such as SAPHIRE, RiskSpectrum, or CAFTA, as well as industry-specific standards and certifications like ASME or NRC guidelines, is typically required. Strong analytical thinking, attention to detail, and effective communication skills are essential for interpreting complex data and presenting findings to diverse stakeholders. These skills and qualifications are crucial for accurately assessing risks, ensuring regulatory compliance, and supporting the safety and reliability of critical systems.

What is the difference between Probabilistic Risk Assessment Engineer vs Fault Tree Analyst?

AspectProbabilistic Risk Assessment EngineerFault Tree Analyst
CredentialsEngineering degree, certifications in risk analysis or reliabilityEngineering or technical background, certifications in fault tree analysis
Work EnvironmentIndustry settings like energy, aerospace, nuclear; risk modelingSafety analysis teams, engineering departments; fault tree development
Employer & Industry UsageUsed by utilities, aerospace, nuclear plants for risk assessmentUsed in safety engineering, accident prevention, reliability studies

Both roles focus on safety and risk analysis but differ in scope. Probabilistic Risk Assessment Engineers develop comprehensive models to quantify risks, while Fault Tree Analysts focus specifically on fault tree development to identify failure pathways. The roles often collaborate but serve distinct functions within safety and reliability teams.

What are popular job titles related to Probabilistic Risk Assessment Engineer jobs in Alabama?

For Probabilistic Risk Assessment Engineer jobs in Alabama, the most frequently searched job titles are:

What job categories do people searching Probabilistic Risk Assessment Engineer jobs in Alabama look for?

The top searched job categories for Probabilistic Risk Assessment Engineer jobs in Alabama are:

What cities in Alabama are hiring for Probabilistic Risk Assessment Engineer jobs?

Cities in Alabama with the most Probabilistic Risk Assessment Engineer job openings:

Infographic showing various Probabilistic Risk Assessment Engineer job openings in Alabama as of August 2026, with employment types broken down into 1% As Needed, 88% Full Time, 8% Part Time, 1% Temporary, and 2% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution.

CYBER PHYSICAL SECURITY ENGINEER

4P Consulting Inc

Birmingham, AL โ€ข On-site

Full-time

This job post hasย expired today.ย Applications are no longer accepted.


Job description

Cyber-Physical Security Engineer

Location: Birmingham, AL, 35203 (Hybrid 3 Days in a Week)

Job Type: Contract

Job Description

Cyber-Physical Security Engineer โ€“ Supplemental Employee Description of Work Environment: This position supports the Schatz Grid Visualization and Analytics Center (SGVAC) within Company's Research & Development department.

The SGVAC is an innovation center that facilitates the research, pre-operational development and assessment and demonstration of situational awareness technologies for Transmission and Distribution.

Areas of focus include synchrophasor technology, next generation control center functionalities, cyber security testing, new visualization approaches, DERMS platform evaluation, data analytics as well as modeling and simulation including via a Real Time Digital Simulator (RTDS) with hardware-in-the-loop testing capability.

Summary of Position Duties

This position provides support to the Grid Operations and Planning Research area within Company's Research & Development. The engineer will support projects and in time lead efforts to deploy and evaluate the performance of emerging technologies in this arena. The position is focused on cyber-physical security research for Transmission and Distribution. The engineer will support cyber-physical security projects with power system and cyber modeling, simulation, and analyses to identify and characterize threats, and vulnerabilities and develop mitigation approaches.

Data from various sources and analytics tools will be leveraged to develop models to characterize normal power system and cyber data to facilitate the identification of anomalous events.

Working knowledge of intrusion detection, risk assessment frameworks, databases, data structures, computer networking is required as well as an aptitude to apply engineering analysis to solve problems.

Education/Qualification Requirements

  • Bachelors in computer science, computer engineering, cyber security, information systems, electrical engineering or related field required
  • Advanced degree in EE, computer science or other related fields strongly preferred
  • Experience in cybersecurity, including cyber security modeling and simulation
  • Experience with intrusion detection and risk assessment frameworks is required
  • Experience in power system modeling and simulation
  • Experience with data analytics including machine learning required
  • Experience with computer programming (Python, C#, SQL) desired

Other Knowledge, Skills & Abilities

  • Must demonstrate good communication skills, both internal and external to the company
  • Must have excellent organizational skills
  • Must possess analytical skills as well as the ability to manage multiple projects simultaneously
  • Must work well in a team environment
  • Must have the ability to manage your own work schedule and work with limited direction
  • Must have strong initiative โ€“ a self-starter
  • Must be great at problem solving
  • Work Location/Arrangement: Candidate will work in a hybrid work arrangement reporting in-person/in-office at least 3 days per week (12 days a month)