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TRANSPORT SIMULATION SOLUTIONS

Transport

The transportation industry is undergoing a revolution: customers need new and personalized experiences. New companies and competitors are emerging and rapidly developing. Electric, connected and autonomous vehicles are entering the market, and many more are in the planning stages. Regulatory requirements for energy consumption, safety and environmental friendliness are tightening in the global market. The complexity is increasing. The problem of cost reduction is more acute than ever.

How can companies successfully compete with others? Digital design is at the core of a strategy to meet these challenges, including virtual testing and simulation in all aspects of vehicle concept, design, production and operation. For market old-timers and innovators, an industry approach is important, where multi-level and cross-industry simulations enable development, innovation, and optimization to bring products to market quickly. At the same time, costs are predicted, risks are reduced, and an attractive product is created that customers want to purchase.

Driving the T&M Industry

    WLTP

  • The Worldwide Harmonized Light Vehicle Test Procedure (WLTP) defines not only methods for estimating pollutant emissions and fuel consumption of vehicles, but also sets out how to report expected performance for electric vehicles. With SIMULIA's simulation solution, OEMs and suppliers can optimize vehicle and component designs to meet more stringent emission limits. Physical testing in WLTP is allowed to be replaced by virtual testing, and SIMULIA allows you to configure the WLTP compliance mode and regulatory requirements.
Automotive Formula

Electric vehicles

  • The pace of electrification is accelerating, but at the same time, the tasks that need to be solved are also becoming more complex. To succeed in the electric vehicle space, both an existing automaker and an electric vehicle start-up need knowledge and experience in simulation. In addition, it is required to introduce a unified approach to the development and verification of complex interconnected systems (from batteries to electric drives), as well as take into account the design features and the ability to control the vehicle.
Automotive Formula

impact resistance

  • Crash test regulations have become much stricter over the past decade, and good performance ratings are required to get good safety ratings. In order to continue earning five-star ratings, OEMs needed to improve their research into designs, materials, and passive safety systems, and this is where impact simulation plays an important role.
Automotive Formula

Vehicle Dynamics

  • Develop, optimize and validate typical dynamic performance including handling, agility and ride comfort with offline and real-time multi-body simulation. It also includes advanced multi-body simulation workflows for strength assessment, noise and vibration studies at the component and system level, and validation of overall mechatronic system capabilities.
Automotive Formula

cabin comfort

  • Solve a variety of design challenges with a digital simulation platform that selects comfort temperature, acoustic, visual and ergonomic comfort for the driver and passengers. Empower customers with end-to-end interior personalization and energy management options.
Automotive Formula

Development of an electric drive

  • Multiphysics simulation allows engineers to predict and validate system performance against various design goals in all possible operating scenarios. Finding a compromise between conflicting requirements such as EMC, durability, noise and vibration control, and lubrication requirements is not an easy task and is best done collectively.
Automotive Formula

performance driven architecture

  • The Performance Driven Architecture industry process enables early design evaluation across disciplines in a single environment that supports requirements entry, architecture definition, system modeling, and virtual simulation. Architects and modellers communicate more effectively with each other to virtually evaluate their ideas and explore the pros and cons at the concept level before moving on to detailed design.
Automotive Formula

Chassis & Suspension Strength, Durability & Vibration

  • The main objectives of the Chassis & Suspension Strength, Durability & Vibration solution are: 1) ensuring the structural integrity of the chassis and suspension to support the body; 2) improved handling and driving characteristics; 3) ensuring compliance with regulatory requirements and quality requirements.
Automotive Formula

Powertrain Strength, Durability & Vibration

  • Powertrain Strength, Durability & Vibration is a solution that integrates all processes of high-fidelity structural modeling of internal combustion engines, which is suitable even for very large models. It is a critical part of the process of developing and optimizing the powertrains of cars, trucks and other vehicles through the virtual verification of structural characteristics using Abaqus Finite Element Analysis (FEM) technology.
Automotive Formula

Brake System Engineering

  • Simulation reproduces the physical 3D effects of stress, heat, and fluid flow in interaction with other vehicle systems, including controls and suspension. Simulation using high-fidelity physics and fast processing techniques allows engineers to quickly evaluate large design sets and improve designs. Design and verification work can be carried out at the level of both the entire vehicle and its subsystems.
Automotive Formula
Talk to our team about Simulia products today!