1

Rf Test Driver Jobs in Indiana (NOW HIRING)

... test and evaluation activities. Our teams deliver physics-based analysis that complements MBSE ... Integrate sensor, RF, EW, weapon, and platform models consistent with MBSE-defined system ...

... test and evaluation activities. Our teams deliver physics-based analysis that complements MBSE ... Integrate sensor, RF, EW, weapon, and platform models consistent with MBSE-defined system ...

Tower Foreman

Indianapolis, IN · On-site

$27.50 - $33.50/hr

Read plans, SWEEP, PIM, Fiber Test. Interface professionally with subcontractors, safety personnel ... RF, PPE, Fall Protection, Right-to-Know, Comtrain, Aerial Lift, Hand & Power Tools, Safe Lifting ...

Tower Foreman

Indianapolis, IN · On-site

$27.50 - $33.50/hr

RF, PPE, Fall Protection, Right-to-Know, Comtrain, Aerial Lift, Hand & Power Tools, Safe Lifting ... Valid driver's license. • Lead crew on weekends as needed. • Produce a quality product on one ...

Showing results 41-60

Rf Test Driver information

What is an RF test driver?

RF Test Drivers are professionals responsible for testing and measuring the performance of radio frequency (RF) signals in wireless communication networks, such as cellular and Wi-Fi systems. They often use specialized equipment and vehicles to conduct drive tests, collecting data on signal strength, coverage, call quality, and network performance. The information they gather helps engineers optimize network design, troubleshoot issues, and ensure reliable service for users. RF Test Drivers typically work for telecom companies, equipment vendors, or network optimization firms.

What are the key skills and qualifications needed to thrive as an RF test driver?

To thrive as an RF Test Driver, you need a solid understanding of radio frequency (RF) principles, cellular network technologies, and a valid driver's license, often supported by a technical diploma or degree. Familiarity with RF testing tools such as TEMS, Nemo, or similar drive test software and GPS systems is typically required. Attention to detail, analytical thinking, and effective communication are vital soft skills for accurately collecting and reporting network data. These skills and qualifications are crucial for ensuring reliable data collection and analysis, which helps optimize wireless network performance.

What are some typical challenges faced by RF test drivers during drive tests, and how can they be effectively managed?

RF Test Drivers often face challenges such as unpredictable traffic conditions, varying weather, and the need to follow specific test routes precisely. Additionally, ensuring accurate data collection while managing complex testing equipment in a moving vehicle can be demanding. To manage these challenges effectively, drivers must develop strong attention to detail, maintain clear communication with engineering teams, and stay adaptable to changing conditions. Familiarity with the test area and thorough pre-test equipment checks also help reduce errors and improve efficiency.

What is the difference between Rf Test Driver vs Rf Test Engineer?

AspectRf Test DriverRf Test Engineer
CredentialsTypically requires a high school diploma or equivalent, technical certifications preferredBachelor's degree in Electrical Engineering or related field, certifications advantageous
Work EnvironmentHands-on testing in labs or production lines, operating test equipmentDesigning tests, analyzing data, and troubleshooting RF systems
Industry UsageCommonly employed in manufacturing and production settingsMore prevalent in R&D and testing laboratories

The Rf Test Driver primarily focuses on operating and executing RF tests on equipment, often in manufacturing environments. In contrast, the Rf Test Engineer is involved in designing test procedures, analyzing results, and improving RF systems. Both roles require technical knowledge, but the Test Engineer typically has a higher level of education and responsibilities.

Infographic showing various Rf Test Driver job openings in Indiana as of August 2026, with employment types broken down into 1% As Needed, 72% Full Time, 25% Part Time, and 2% Contract. Highlights an 99% Physical, and 1% Remote job distribution.

AFSIM Simulation Engineer

Crane, IN • On-site

Barbaricum
National Security • 201 - 500 employees

Full-time

Re-posted yesterday


Job description

Barbaricum is a rapidly growing government contractor providing leading-edge support to federal customers, with a particular focus on Defense and National Security mission sets. We leverage more than 17 years of support to stakeholders across the federal government, with established and growing capabilities across Intelligence, Analytics, Engineering, Mission Support, and Communications disciplines. Founded in 2008, our mission is to transform the way our customers approach constantly changing and complex problem sets by bringing to bear the latest in technology and the highest caliber of talent.
Headquartered in Washington, DC's historic Dupont Circle neighborhood, Barbaricum also has a corporate presence in Tampa, FL, Bedford, IN, and Dayton, OH, with team members across the United States and around the world. As a leader in our space, we partner with firms in the private sector, academic institutions, and industry associations with a goal of continually building our expertise and capabilities for the benefit of our employees and the customers we support. Through all of this, we have built a vibrant corporate culture diverse in expertise and perspectives with a focus on collaboration and innovation. Our teams are at the frontier of the Nation's most complex and rewarding challenges. Join our team.
Barbaricum supports NSWC Crane with advanced modeling, simulation, and mission analysis capabilities that inform DoD platform architecture, system integration, and test and evaluation activities. Our teams deliver physics-based analysis that complements MBSE efforts by transforming authoritative SysML-based system models into executable mission-level simulations and actionable analysis products across complex, multi-domain operational environments.
We are seeking an AFSIM Simulation Engineer to develop and execute mission-level and kill-chain simulations that consume MBSE-defined system architectures, interfaces, and mission threads to assess hardware-centric DoD platforms and integrated mission systems.
The Role
The AFSIM Simulation Engineer develops, executes, and analyzes physics-based mission simulations using the Advanced Framework for Simulation and Integration Modeling (AFSIM). This role supports mission effectiveness assessments, experimentation, and Live, Virtual, and Constructive (LVC) events by implementing MBSE-derived SysML views-including requirements, functional threads, physical architectures, and interfaces-as AFSIM inputs to evaluate sensor-to-shooter kill chains and operational effects, including EMSO-relevant influences.
Responsibilities
  • Develop, modify, and execute AFSIM models derived from MBSE SysML artifacts, including mission threads, functional flows, system architectures, and interface definitions
  • Analyze blue vs. red kill chains, system interactions, and mission-level effects across integrated sensor, shooter, and command elements
  • Translate MBSE handoff artifacts (requirements allocations, activity diagrams, block definitions, internal block diagrams) into executable AFSIM entities, behaviors, and interactions
  • Integrate sensor, RF, EW, weapon, and platform models consistent with MBSE-defined system boundaries, interfaces, and architectural assumptions
  • Support experimentation, test events, and LVC exercises focused on validating system architectures, mission threads, and kill-chain performance
  • Conduct verification and validation of AFSIM models against MBSE-defined assumptions, constraints, and system definitions
  • Perform statistical and analytical assessments of mission outcomes and kill-chain performance drivers, producing analysis products traceable to system design and architecture decisions
  • Collaborate with MBSE, LVC, and other modeling and simulation teams to maintain digital thread continuity from SysML models through AFSIM simulations to analysis reports and T&E artifacts
Required Qualifications
  • Bachelor's degree in Engineering, Physics, Operations Research, or related technical field
  • Active DoD Secret (Top Secret/SCI preferred)
  • 5+ years of modeling and simulation experience supporting system-level or mission-level analysis
  • Hands-on experience developing and executing AFSIM models
  • Strong understanding of mission-level analysis, system architectures, and kill-chain dynamics
  • Ability to interpret and analyze large simulation datasets and trace results back to system requirements and architecture drivers
Desired Qualifications
  • Experience supporting DoD platforms or hardware-centric mission systems within an MBSE-driven development environment
  • Experience executing sensor-to-shooter or effects-based kill-chain analysis tied directly to system architecture trades
  • Experience supporting DoD test, evaluation, or experimentation activities using MBSE-informed scenarios and architectures
  • Programming experience in Python, C++, or MATLAB

EEO Commitment
All qualified applicants will receive consideration for employment without regard to sex, race, ethnicity, age, national origin, citizenship, religion, physical or mental disability, medical condition, genetic information, pregnancy, family structure, marital status, ancestry, domestic partner status, sexual orientation, gender identity or expression, veteran or military status, or any other basis prohibited by law.