Senior Systems Modeling Engineer

Zipline

South San Francisco (CA)

On-site

USD 180,000 - 240,000

Full time

14 days+
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Job summary

Zipline is seeking an experienced engineer to lead the development of electric propulsion modeling capabilities for its autonomous aircraft systems. You will own the modeling lifecycle from first-principles development to validation against laboratory testing and production flight data.

You will collaborate with electrical, mechanical, thermal, controls, flight test, manufacturing, and fleet operations teams to translate modeling insights into better products and engineering decisions.

Qualifications

  • 8+ years of industry experience developing and validating physics-based models.
  • Experience designing experimental campaigns for parameter identification and model validation.
  • Proven ability to drive engineering decisions with quantitative analysis and modeling.

Responsibilities

  • Develop and validate physics-based models of electric propulsion systems across multiple fidelity levels.
  • Design and lead characterization campaigns for parameter identification and model validation.
  • Drive engineering decisions through quantitative analysis and trade studies.
  • Build and own clean, modular modeling frameworks and tools.
  • Improve model fidelity by comparing predictions with lab testing and flight data.
  • Collaborate with cross-functional teams to translate insights into product decisions.

Skills

Physics-based modeling
Electric propulsion modeling
MATLAB
Python
Julia
Rust
Numerical methods
Optimization
Controls
Cross-functional collaboration

Education

MS or PhD in Electrical Engineering

Tools

ANSYS Motor-CAD
ANSYS Maxwell
JMAG
COMSOL
ANSYS Icepak

Job description

About Zipline

Zipline is the world's largest and most experienced drone delivery service. We are on a mission to serve all humans equally by ensuring access to food, medicine and essential goods anytime, anywhere. We design, build, and operate the world's largest autonomous logistics system, delivering critical supplies quickly and reliably. Today, Zipline operates on four continents, makes a delivery somewhere in the world every 30 seconds, and has completed millions of deliveries to date, including blood, vaccines, medical supplies, food, and retail products.

Our customers include the world's largest and most prominent healthcare systems, governments, retailers, restaurants and global businesses who rely on us to save lives, reduce emissions, increase economic opportunity, and provide delivery from point A to point B as fast as possible. The drone is only 15% of what we've built to enable seamless, reliable, global operations.

Our system strengthens supply chains, reduces congestion, and gives people time back. With more than 140 million commercial autonomous miles safely flown, Zipline is redefining access to healthcare, consumer products, and food across the globe.

We operate at a global scale and are looking for practical problem solvers who thrive on real-world challenges and rapid growth. Our team is motivated by building systems that have a direct, meaningful impact on people's lives and by scaling the future of logistics. We are seeking people who sculpt from first principles, enjoy facing adversity, and can do the impossible at record breaking speeds.

About You and The Role

You will be part of Zipline's Systems Modeling Team, which develops physics-based models used to architect, optimize, and validate Zipline's aircraft hardware and operational systems. Electric propulsion performance directly impacts aircraft efficiency, mission capability, thermal management, operating cost, and fleet reliability.

You will lead the development of Zipline's electric propulsion modeling capability, spanning motors, inverters, gearboxes, and propellers-from component physics through integrated aircraft and fleet-level behavior. Your models will guide propulsion hardware design, operating limits, thermal management, and control strategies, enabling better engineering decisions throughout the product lifecycle.

This is an engineering ownership role - not a simulation support role. You will drive the complete modeling lifecycle, from first-principles model development and parameter identification through experimental validation, deployment into engineering workflows, and continuous improvement using laboratory testing and production flight data.

What You'll Do
  • Develop and validate physics-based models of electric propulsion systems across multiple levels of fidelity, supporting aircraft simulation, hardware design, controls development, and fleet operations.
  • Design and lead characterization campaigns for parameter identification and model validation, defining test requirements, instrumentation, and procedures for dynamometer, thrust stand, wind tunnel, and thermal testing.
  • Drive engineering and operational decisions through quantitative analysis and trade studies, influencing propulsion architecture, operating limits, thermal management, control strategies, aircraft performance, and fleet reliability.
  • Build and own clean, modular, object-oriented modeling frameworks and engineering tools that are maintainable, reusable, and scalable across aircraft programs.
  • Continuously improve model fidelity by comparing predictions against laboratory testing and production flight data, identifying model deficiencies, and deploying validated improvements that increase predictive accuracy across the fleet.
  • Partner closely with electrical, mechanical, thermal, controls, flight test, manufacturing, and fleet operations teams to translate modeling insights into better products and engineering decisions.
What You'll Bring
  • 8+ years of industry experience developing and validating physics-based models for electric powertrains, aerospace systems, electric vehicles, robotics, or other complex electro-mechanical systems.
  • Demonstrated ability to design experimental characterization campaigns for parameter identification and model validation, including defining test plans, instrumentation, and measurement requirements.
  • Track record of using quantitative analysis and modeling to drive engineering decisions, including design trade studies, operating limits, performance optimization, or system architecture decisions.
  • Proficiency in MATLAB, Python, Julia, Rust, or similar languages, with experience developing clean, modular, object-oriented engineering code and reusable modeling frameworks.
  • Solid foundation in numerical methods, optimization, controls, and engineering model validation.
  • Excellent communication and collaboration skills, with the ability to influence cross-functional engineering decisions through quantitative analysis.
  • Ability and willingness to work onsite with cross-functional engineering teams. This role requires regular hands‑on collaboration with hardware, testing, and flight operations.

Preferred Qualifications

  • M.S. or Ph.D. in Electrical Engineering, Mechanical Engineering, Aerospace Engineering, or a related field.
  • Experience using high-fidelity electromagnetic and thermal simulation tools such as ANSYS Motor-CAD, ANSYS Maxwell, JMAG, COMSOL, ANSYS Icepak, or similar.
  • Familiarity with production telemetry, fleet operations, or hardware test data for engineering model validation and continuous improvement.
What Else You Need To Know

Zipline is an equal opportunity employer and prohibits discrimination and harassment of any type without regard to race, color, religion, age, sex, national origin, disability status, genetics, protected veteran status, sexual orientation, gender identity or expression, or any other characteristic protected by federal, state or local laws or our own sensibilities.

We value diversity at Zipline and welcome applications from those who are traditionally underrepresented in tech.

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