Lead Engineer, Multi-Body Dynamic Simulation (MBD)

Fisker
October 13, 2023
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About Fisker Inc.

California-based Fisker Inc. is revolutionizing the automotive industry by developing the most emotionally desirable and eco-friendly electric vehicles on Earth. Passionately driven by a vision of a clean future for all, the company is on a mission to become the No. 1 e-mobility service provider with the world's most sustainable vehicles. To learn more, visit www. FiskerInc.com – and enjoy exclusive content across Fisker's social media channels: Facebook, Instagram, Twitter, YouTube and LinkedIn. Download the revolutionary new Fisker mobile app from the App Store or Google Play store.

Role Overview

Fisker Inc. is a design led pioneering mobility technology company researching, developing and producing next generation electrically powered vehicles. As the electrification revolution begins to infiltrate the automotive industry, Fisker are focused on delivering advanced smart solutions across the electrification ecosystem from charging, to battery technology, powertrain and connected vehicle functionality. Strong product design is at our core where distinctive emotional yet cost effective style meet the latest in cutting edge technology.

Lead Engineer, Multi-Body Dynamic Simulation (MBD)

As a lead multi-body dynamic simulation engineer, you will be responsible for MBS model buildup, validation, and correlation and continuously update the model during the development of the vehicle.

Requirements:

  • Bachelor's Degree in Mechanical Engineering. Master's and Ph.D. preferred.

  • 8+ years MBS simulation experience in the automotive industry. (10+ years experience for Bachelor degree).

  • In depth knowledge of vehicle suspension, motion kinematics, and overall function of the system.

  • Adams skill is a must.

  • Excellent understanding of vehicle dynamics principles.

  • Solid background of mechanics, kinematics, and vibration.

  • Preferred Skills:

  • Knowledge of rigid body mode decoupling for the engine or EDU.

  • Good understanding the balance of vehicle dynamic, ride comfort, and vibration.

  • Good understanding of vehicle NVH and isolation.

  • Responsibilities:

  • Develop and evaluate tire, suspension, steering and brakes subsystem models in Adams.

  • Perform ride comfort simulation and provide design change direction.

  • Perform K&C evaluation and familiar with K&C tuning.

  • Understand RLDA and VRLDA and able to help durability group to abstract the load.

  • Develop test plans and provide support for driver-in-the-loop simulator tests.

  • Use simulation to tune the system to satisfy the requirements of vehicle dynamic (steering, handling, acceleration and braking), NVH, and ride comfort.

  • Collaborate with other teams, cross-function check for design changes and provide load information for chassis and durability.

  • Develop CAE modelling methods, requirements & perform correlation studies with physical test data.

  • Work collaboratively with attribute, testing and product teams to enhance the ride comfort predictability.

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