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Modeling Simulation Analyst Jobs in Riverview, FL

RF Design & Simulations Engineer

Tampa, FL ยท On-site

$110 - $160/hr

Transition designs from simulation into hardware and lead lab validation of prototypes using vector network analyzers, spectrum analyzers, signal generators, power meters, and oscilloscopes. Model ...

New

Operations Research Analyst

Tampa, FL ยท On-site

$93K - $110K/yr

Using statistical analysis, simulations, predictive modeling, and other methods to analyze information in support of USSOCOM processes and decision-making. * Employing analytic and operational design ...

Principal Electrical Engineer

Saint Petersburg, FL ยท On-site

$131K - $160K/yr

The St. Petersburg facility specializes in the design, modeling, simulation, prototyping ... Perform system-level analysis, functional analysis, interface analysis, timeline analysis, and ...

Principal Electrical Engineer

Saint Petersburg, FL ยท On-site

$131K - $160K/yr

The St. Petersburg facility specializes in the design, modeling, simulation, prototyping ... Perform system-level analysis, functional analysis, interface analysis, timeline analysis, and ...

Showing results 41-60

Modeling Simulation Analyst information

See Riverview, FL salary details

$34.8K

$90.3K

$128.4K

How much do modeling simulation analyst jobs pay per year?

As of Aug 20, 2026, the average yearly pay for modeling simulation analyst in Riverview, FL is $90,311.00, according to ZipRecruiter salary data. Most workers in this role earn between $70,000.00 and $115,500.00 per year, depending on experience, location, and employer.

What is a modeling simulation analyst?

Modeling Simulation Analysts are professionals who use mathematical models, simulations, and analytical techniques to study complex systems and predict their behavior. They help organizations make informed decisions by evaluating scenarios, testing hypotheses, and optimizing processes through virtual models. These analysts work in various industries, including defense, healthcare, manufacturing, and transportation, to improve efficiency, reduce costs, and support planning and strategy. Their work often involves collaboration with engineers, scientists, and decision-makers to interpret simulation results and implement solutions.

How does a modeling simulation analyst typically collaborate with cross-functional teams during a project?

Modeling Simulation Analysts frequently work alongside engineers, data scientists, and project managers to develop and refine simulation models. Collaboration often involves gathering system requirements, validating model assumptions with subject matter experts, and presenting simulation results to stakeholders. Clear communication is essential, as analysts must translate complex simulation data into actionable insights for decision-makers. Regular team meetings and iterative feedback are common to ensure the models accurately reflect real-world scenarios and project goals.

What are the key skills and qualifications needed to thrive as a modeling simulation analyst, and why are they important?

To thrive as a Modeling Simulation Analyst, you need a strong background in mathematics, statistics, and computer science, often supported by a relevant degree such as in engineering or applied mathematics. Proficiency in simulation software (e.g., MATLAB, Simulink, Arena), programming languages (such as Python or C++), and familiarity with data analysis tools are typically required. Strong analytical thinking, attention to detail, and effective communication skills set top candidates apart in this role. These abilities are vital for developing accurate models, interpreting complex data, and clearly presenting findings to support strategic decision-making.

What is the difference between Modeling Simulation Analyst vs Data Analyst?

AspectModeling Simulation AnalystData Analyst
Required CredentialsBachelor's or master's in engineering, computer science, or related fields; proficiency in simulation softwareBachelor's in statistics, mathematics, or related fields; proficiency in data analysis tools
Work EnvironmentEngineering labs, simulation centers, or technical departmentsOffice settings, data centers, or business environments
Employer & Industry UsageManufacturing, aerospace, defense, or engineering firmsFinance, healthcare, marketing, or business sectors
Common Search & ComparisonYesYes

The Modeling Simulation Analyst focuses on creating and analyzing simulations to predict system behaviors, often requiring engineering or technical expertise. In contrast, Data Analysts interpret data sets to inform business decisions, typically using statistical tools. While both roles involve data handling, the Modeling Simulation Analyst emphasizes modeling complex systems, whereas Data Analysts focus on data interpretation for strategic insights.

Is modeling a high paying job?

Modeling simulation analysts often earn competitive salaries, especially with experience and advanced skills in programming, data analysis, and simulation tools. Salaries can vary based on industry, location, and level of expertise, but the role generally offers above-average compensation compared to many entry-level positions.

What does a modeling simulation analyst do?

A modeling simulation analyst develops and runs computer models to analyze complex systems and predict outcomes. They use specialized software and data analysis skills to support decision-making in fields like engineering, defense, or manufacturing, often working with large datasets and simulation tools. The role requires strong analytical skills, attention to detail, and knowledge of modeling techniques and programming languages.

What job categories do people searching Modeling Simulation Analyst jobs in Riverview, FL look for?

The top searched job categories for Modeling Simulation Analyst jobs in Riverview, FL are:

What cities near Riverview, FL are hiring for Modeling Simulation Analyst jobs?

Cities near Riverview, FL with the most Modeling Simulation Analyst job openings:

RF Design & Simulations Engineer

Socket.dev

Tampa, FL โ€ข On-site

$110 - $160/hr

Other

Posted 2 days ago

New


Job description

About Orion Edge

We are an agile, early-stage startup in a rapid growth phase, developing next-generation electronic warfare (EW) and digital disruption equipment. Our mission is to deliver cutting-edge capabilities to the modern warfighter at speed. Orion Edge is currently delivering systems to the US Army and USSOCOM, and we are scaling quickly to support the broader Department of Defense (DoD). If you thrive in a fast-paced environment where your work directly impacts national security and you have the opportunity to scale your career with a growing company, you belong here.

Position Overview

As an RF Design & Simulations Engineer at Orion Edge, you will define the electromagnetic behavior of our systems before a single board is fabricated. You will architect and simulate the amplifiers, filters, matching networks, antennas, and transitions that make up our transmit and receive chains, and you will be accountable for the correlation between what the model predicts and what the hardware actually does.

This role sits at the front of our hardware development cycle. You will work in Keysight ADS and Ansys HFSS to explore, optimize, and de-risk designs; hand validated geometries to our RF PCB Design Engineer; and then follow the design into the lab to prove it on a network analyzer. Every model you build should get more accurate because of the measurement that came before it.

If you want ownership of RF performance from first principles through fielded hardware, and you want that cycle measured in weeks rather than years, this is your team.

Education Requirements

Bachelor of Science (B.S.) in Electrical Engineering, Electromagnetics, Physics, or a closely related technical field. M.S. in RF/microwave engineering or applied electromagnetics preferred.

Key Responsibilities

Circuit Design & Simulation: Utilize Keysight ADS for schematic capture, linear and nonlinear circuit simulation, harmonic balance analysis, and planar EM simulation of amplifiers, filters, and matching networks.

3D Electromagnetic Modeling: Use Ansys HFSS to model and optimize complex 3D structures, including antennas, waveguide transitions, RF connectors, enclosures, and cavity resonances.

Performance Optimization: Analyze and optimize S-parameters, gain, noise figure, linearity, and power efficiency across targeted frequency bands and operating conditions.

EM Co-Simulation: Perform layout-to-circuit EM co-simulation to verify that physical layouts match theoretical models prior to fabrication, and identify parasitic, coupling, and resonance risks before committing to a build.

Simulation-to-Hardware Transition: Transition designs from simulation into hardware and lead lab validation of prototypes using vector network analyzers, spectrum analyzers, signal generators, power meters, and oscilloscopes.

Model Correlation: Systematically correlate simulated results against empirical measurement, root-cause the deltas, and feed those corrections back into the modeling approach so future designs converge faster.

Cross-Disciplinary Collaboration: Partner with PCB layout, digital/FPGA, firmware, and mechanical engineers to ensure RF requirements survive integration into a complete, environmentally hardened system.

Requirements & Budgets: Develop RF requirements, link and cascade budgets, and feasibility analyses that inform system-level architecture decisions.

Required Skills & Experience

Professional Experience: Minimum of 3 years of hands-on RF/microwave circuit design and electromagnetic simulation experience.

Tool Proficiency: Strong proficiency in both Keysight ADS and Ansys HFSS, including harmonic balance, planar EM (Momentum/RFPro), and 3D full-wave solver setup, meshing, and convergence practice.

Electromagnetics Foundation: Deep understanding of electromagnetics, transmission line theory, and RF/microwave circuit design principles, including impedance matching, resonance, and coupling behavior.

Simulation-to-Measurement Correlation: Demonstrated experience correlating simulated EM results with real-world empirical lab measurements and using that correlation to tune and improve future models.

Lab Competency: Hands-on proficiency with RF test equipment, including VNA calibration and de-embedding, spectrum analysis, and noise figure and power measurement.

Component-Level Design: Practical experience designing and optimizing at least two of the following: low-noise amplifiers, power amplifiers, filters, matching networks, mixers, or antennas.

Design Communication: Ability to produce clear design documentation, simulation reports, and trade studies that a cross-functional team can act on.

U.S. Citizenship & Security Clearance: Must be a U.S. citizen and must be able to obtain and maintain a U.S. security clearance. This position requires access to export-controlled technical data under ITAR and EAR.

Preferred Qualifications

Defense RF Systems: Experience designing RF hardware for electronic warfare, SIGINT, radar, counter-UAS, or tactical communications applications.

Wideband & High-Power Design: Experience with broadband amplifier design, multi-octave matching networks, or high-power transmit chain design and thermal co-analysis.

Antenna Design: Demonstrated antenna design and characterization experience, including pattern measurement, anechoic chamber or range testing, and platform integration effects.

SDR Integration: Familiarity with software-defined radio architectures and the analog front-end considerations that drive ADC/DAC dynamic range, filtering, and gain distribution.

Additional EM Tools: Working experience with CST Studio Suite, Feko, Sonnet, or comparable solvers.

Automation & Analysis: Proficiency in Python or MATLAB for design automation, parametric sweeps, post-processing, and test automation.

PCB Layout Fluency: Practical familiarity with Altium Designer and RF layout constraints sufficient to work fluidly with the layout team.

Environmental & EMC: Familiarity with MIL-STD-461 EMI/EMC and MIL-STD-810 environmental qualification requirements and their impact on RF design margin.

Advanced Degree: M.S. or Ph.D. in applied electromagnetics, RF/microwave engineering, or antenna theory.

Professional Attributes

Physically Grounded: You have a deep intuition for field behavior and you know when a simulation result is telling you something real versus when it is telling you your mesh is wrong.

Measurement-Honest: You trust the bench over the model. When simulation and measurement disagree, you find out why rather than adjusting the plot.

Methodical Problem Solver: You isolate variables systematically, separating solver artifacts from fixture effects from genuine design deficiencies.

Clear Communicator: You can explain an impedance mismatch, a cavity resonance, or a noise figure budget clearly to layout, mechanical, and systems engineers who do not live in Smith charts.

Self-Directed & Resourceful: You are comfortable owning ambiguous RF requirements, running your own trade studies, and building the analysis you need rather than waiting for it.

Curious & Collaborative: You are energized by working across disciplines and by seeing your designs go from a solver window to a fielded system.

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