Battlefield Simulation System Engineer (m/f)

Airbus

Marseille

Sur place

EUR 70 000 - 110 000

Plein temps

Il y a 10 jours
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Résumé du poste

Airbus Helicopters is seeking engineers to drive next-generation rotorcraft battlefield simulations at the Marignane site near Marseille. You will model end-to-end mission effects, build common frameworks, and optimize CONOPS for helicopter systems using MBSE approaches.

Key duties include translating architectures into executable simulations (VR-Forces), validating components, and delivering comprehensive documentation and training to end-users across multidisciplinary teams.

Qualifications

  • MBSE-driven simulation development experience preferred.
  • A background in aerospace or defense simulation is advantageous.
  • Experience with Cameo MBSE tools and VR-Forces recommended.
  • Programming in C++, Python, and Lua is desirable.

Responsabilités

  • Define and mature common Battlefield understanding and CONOPS.
  • Architect mission engineering threads using MBSE standards.
  • Translate architectures into executable constructive simulations.
  • Develop, test, and validate simulation components and scenarios.
  • Document requirements and provide end-user training.

Connaissances

MBSE
CAMEO
Python
C++
Lua
VR-Forces
AI/ML
Geospatial data
Terrain visualization

Formation

Engineering degree (B.Sc./M.Sc.)

Outils

VR-Forces
CAMEO

Description du poste

Job Description

As our organization embarks on the development of Next-Generation Rotorcrafts, the need for advanced battlefield simulation capabilities has become increasingly critical. This cutting-edge next generation rotorcraft will operate in highly complex and contested environments, requiring our pilots, crews, and mission planners to be prepared for a wide range of challenges and scenarios.

Battlefield simulations will play a pivotal role in ensuring that our personnel are fully prepared to leverage the capabilities of these next-generation aircraft and give us the capability to exchange with MOD and operational customers.

Furthermore, the simulations must incorporate realistic representations of the operational environments in which these aircraft will be deployed. Moving beyond single-platform performance ('building things right'), your focus will be on Mission efficacy ('building the right things'). You will model end-to-end effects chains, run operational simulations, and analyze system-of-systems capability gaps to inform strategic developments, technology roadmaps, and concepts of employment.

By creating immersive and challenging scenarios, we will have the opportunity to experience and respond to a wide range of situations, from air-to-air combat and air-to-ground operations to joint operations with ground and naval forces. This will not only enhance our skills and decision-making abilities but also foster a deeper understanding of the capabilities and limitations of these Next-Generation platforms.

You will join the “Situational Awareness and Mission Management” department and will integrate multifunctional and transnational teams. You will be responsible to develop & mature a common Battlefield understanding and common frameworks inside Airbus Group for architecting and developing in the right way (effective & efficient) and to optimize the Concepts of Operations (CONOPS) and high-level requirements (HLR) of the Helicopters and/or System of Systems with a Mission Engineering approach.

Join us to shape the future of aeronautics and help protect lives during missions accomplished thanks to our helicopters.

The Marignane site, the 3rd largest industrial site in France, near Marseille and Aix-en-Provence, is undergoing a deep transformation to offer a high-tech, inclusive, and environmentally friendly working environment.

You will live a unique professional experience, at the heart of the manufacturing of our helicopters.

To learn more about our site and our activities: Airbus Helicopters - Marignane

  • ENGRT2, in collaboration with European industry partners
  • NGRC, with the objective to demonstrate to NATO Airbus Helicopters Concept Design proposal effectiveness through simulated missions
  • Various R&T projects, to develop synergies within Airbus Helicopters and Airbus Group (ADS)
  • Mission Characterization & Context Development: Collaborate with subject matter experts to analyze or contribute to the definition of operational scenarios, threat environments, and concepts of operation (CONOPS) across near-, mid-, and far-term epochs, establishing a hierarchical metrics framework that bridges system-level parameters to task-level military effects and overall mission success.
  • Digital Mission Architecture & MBSE: Architect solution-agnostic Mission Threads (MTs) and system-allocated Mission Engineering Threads (METs) using standard modeling frameworks in Cameo (UAF, SysML), establishing baseline and alternative architectures to quantitatively assess the operational impact of emerging technology insertions.
  • Operational Modeling & Simulation (M&S): Translate digital mission architectures into executable constructive operational simulations (e.g. VR-Forces), design Design-of-Analysis frameworks to explore trade spaces and sensitivity analysis under contested or degraded conditions ; with particular focus on Airbus Helicopters assets contributions.
  • Testing and Validation: Conduct rigorous testing and validation of simulation components, scenarios, and overall system performance, ensuring compliance with established standards and requirements.
  • Documentation and Training: Develop comprehensive documentation (High level Requirements, CONOPS into NAF framework, ...) and provide training to end-users (A/C Architect, Projects, Chief Eng....), ensuring effective utilization of the simulation capabilities.
  • Physics Modeling: Develop and/or integrate realistic physics models for aircraft dynamics, weapon systems, and sensor simulations, ensuring accurate behavior and performance in simulated scenarios.
  • Terrain Modeling: Integrate high-fidelity terrain data and create realistic virtual environments, including accurate representations of terrains, weather conditions, and environmental factors.
  • Data Integration: Integrate external data sources, such as flight data, mission planning systems, and intelligence data, to enhance the realism and accuracy of simulations.
  • Artificial Intelligence: Implement advanced AI algorithms to simulate realistic behavior of friendly and enemy forces, including aircraft, ground units, and air defense systems.
As part of the Transversal Military Squad, you will be contributing to:
Develop Battlefield Simulation Competencies within Engineering
Methodology
  • Adopt a model-based systems engineering (MBSE) approach for simulation development, leveraging tools like CAMEO, and various Computer Generated Forces (CGF) tools (VR-Forces in particular).
  • Implement a comprehensive simulation lifecycle, encompassing requirements analysis, design, implementation, verification, and validation.
  • Establish processes for continuous integration of real-world data, intelligence, and operational feedback to maintain simulation fidelity.
Tools
  • Leverage state-of-the-art simulation frameworks like VR-Forces for multi-domain battlefield simulations, incorporating air, land, sea, and space domains.
  • Implement physics-based models for accurate simulation of rotorcraft dynamics, weapon systems, and sensor performance.
  • Integrate high-fidelity terrain data, weather models, and sensor simulations for realistic environmental representations with the support of Metier Experts.
  • Develop advanced artificial intelligence (AI) and machine learning (ML) models to simulate realistic behavior of friendly and adversary forces.
Identify new Competencies or synergies with AH’s Org.
  • Systems engineering and simulation architecture design
  • Software development (C++, Python, LUA, etc.) and integration
  • Artificial intelligence and machine learning
  • Physics modeling and computational fluid dynamics
  • Geospatial data processing and terrain visualization
  • Virtual and augmented reality technologies
  • User experience (UX) and interface design
  • Verification, validation (VV) processes
Establish Partnerships and Collaborations (NATO, Labs, ...)
Ecosystem of Partners
  • Simulation software providers (e.g., MAK Technologies, BSI,...)
  • Geospatial data and visualization companies (e.g., ADS)
  • AI and machine learning specialists
  • Game engine and VR technology companies and
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