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Innovative Solution to Enhance Safety and Driving Experience

ADAS or Advanced Driver Assistance Systems are efficient devices that enhance automobiles to ensure a safe driving experience. Almost all recent vehicles have incorporated ADAS for two reasons: Firstly, to minimize the risk of injuries during accidents and secondly, to alert the driver of potential problems that can eventually cause accidents.

An Advanced Software Solution to Enhance Safety and Driving Experience

While ADAS comes with a great set of efficient solutions, there are certain drawbacks that most engineers encounter. These include complexity and high development costs, difficulty of synchronization, compliance to industry guidelines and regulations, generation environmental waste, and time-consuming testing and validation methodologies.

VI-grade offers an entirely new version of ADAS that provides a collaborative environment. This software solution enables engineers to develop models pertaining to control system design, traffic simulation, sensor fusion, etc. These models can be connected to driving simulators to improve efficiency without hassles.

ADAS & AV: Hardware & Software Solutions

  • Static & DiM Simulator
    The Static Simulator provides a realistic view of a vehicle whereas the DiM Simulator comes with high maneuverability capabilities and provides a motion response with 9 DOF.
  • Passenger Car Cockpit
    This immersive, realistic, and ergonomically designed driving simulator allows engineers and designers to design products according to customer needs. It’s CANbus interface allows multi-integration and co-simulation.
  • Active Systems
    The active system driving simulator consists of a body contact system to enhance the experience of immersion and steady-state accelerations. It enables engineers and designers to replicate exact responses caused by active belts, seats and brake components.
  • Software-in-the-loop
    Software-in-the-loop allow engineers to use active systems and controllers straight within the simulation. The parameters used in these simulators can be tweaked according to customer requirements. Further, it provides a platform that enables testing and development of new real-time vehicle models.
  • Hardware-in-the-loop
    It offers a platform in which active control strategies are tested against all possible working scenarios. The effectiveness of the control strategy, possible failure conditions, and safety aspects form a crucial part of this simulator.
  • Driver-in-the-loop
    This is an innovative strategy to develop and control vehicle systems. With the help of driving simulators, frontloading activities in the product development cycle is easier.