Sustainable Future Aerospace Mobility Software Solutions
Software Defined Aviation

Service Overview

Hyundai AutoEver leverages its vehicle mobility software expertise to lead technological innovation in advanced avionics and electrified powertrain sectors.
Through next-generation software platforms, we realize safe and efficient flights for Advanced Air Mobility(AAM) and help shape a sustainable future for the aerospace industry.
Hyundai AutoEver is accelerating the shift toward software-centric aviation systems, firmly believing that the core competitiveness of AAM will be determined by next-generation software platforms.

Introduction to SDA

From Automobiles to Aviation: The Expansion of Hyundai AutoEver’s Software Solutions

Building on extensive experience in developing vehicle-based In-Vehicle Software solutions, Hyundai AutoEver is leading the realization of Software Defined Aviation (SDA) to pioneer the Advanced Air Mobility(AAM) market. Leveraging scalable software technologies and proven expertise that span from automobiles to aviation, we deliver differentiated technological competitiveness to our customers.

Vehicle Electronic Software

Software Platform Development Environment

Navigation

Precise Mapping

In-Vehicle
Solutions

Electric Propulsion Software Platform

Motor Control
Battery Management System (BMS)
Electric Propulsion System

Avionics Software Platform

Flight Management / Aeronautical Mapping
Flight Control

Software Platform

01

Avionics Software

Flight Management Software Based on Automotive UI/UX

We apply an intuitive interface and user experience (UI/UX), similar to driving a car, to the Advanced Air Mobility(AAM) flight environment, delivering a passenger-centric inflight infotainment system that maximizes convenience and usability.

02

Battery Management Software

High-Reliability Battery Management Platform Leveraging EV Technology

Built on proven and efficient battery management technology from the electric vehicle (EV) domain, we offer a battery management software platform optimized for AAM power systems. This platform ensures both reliability and safety, while maximizing hardware efficiency.

03

Distributed Electric Propulsion Control Software

Electric Propulsion Software Platform for AAM

In response to the electric propulsion system architecture, a key trend in AAM and next-generation aviation technology, we provide a dedicated software platform for controlling electric motors. It supports precise thrust control and flexible emergency response capabilities.

Unique Advantages

Application of Software-Defined Vehicle (SDV) Architecture

Provides a software-centric platform that enables key functions to be defined independently of specific hardware components

Maximizes system performance and allows flexible feature expansion and maintenance through SDV-based architecture

Incorporates Hyundai AutoEver’s expertise in in-vehicle embedded software and navigation software platforms

Adopts high-efficiency battery and electric motor control technologies proven in EV platforms

Offers pilot/passenger convenience with a vehicle-like UI/UX experience

Customized AAM Software Platform

Builds specialized features tailored to customer requirements on top of a common software platform

Provides a modular Basic Software (BSW) platform designed with future scalability and reusability in mind

Supports standardized functions and interfaces applicable to various AAM controllers or Line Replacement Units (LRUs)

Offers a high-efficiency solution architecture to accelerate aerospace software development

Compliance with Aviation Certification Standards

Fully implements software based on the DO-178C development process, the safety standard for aviation software

Provides a development environment platform that satisfies aviation certification requirements

Enables efficient development and reliable deployment of aviation-certified software

Contact an AAM SW Expert at
Hyundai AutoEver Directly.

Our dedicated experts will provide you with a comprehensive
consultation on detailed features and the implementation timeline.

Contact Us