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AI adoption across automotive value chain to surge as sector grapples with rising competition: PwC

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AI and advanced technology adoption across the automotive value chain to surge – from 47% of companies using them today to 72% in 2030Almost half (46%) of automotive executives identify new entrants from adjacent industries, such as technology and energy, as a key source of competition over the next five yearsAlmost two-thirds (64%) are pursuing ecosystem participation as technology re-shapes the mobility experience – rising to 80% among the top 20% of ‘future-fit’ automotivesBattery electric vehicles are expected to grow from 18% to 30% of production volume over the next five years – while traditional internal combustion engine (ICE) share is expected to fall from 60% to 41%Respondents expect 33% of revenue to come from new customers within five years – such as commercial fleet operators, mobility service providers, and governments

LONDON, Sept. 24, 2026 /PRNewswire/ — The use of AI and other advanced technologies across the automotive value chain is expected to surge over the next five years, with the proportion of companies using them rising from 47% today to 72% in 2030, according to PwC’s inaugural Global Automotive Outlook, launched today.

At the same time, more than half (51%) see AI as one of the most important technologies for achieving their strategic goals, more than the two-fifths (41%) who cite battery and electric powertrains. More than one-third (39%) cite in-vehicle software connectivity.

This growing focus on technology – across manufacturing, R&D, supply chains, sales and corporate functions – comes as rising competition, new customer bases and electrification in the sector re-shapes consumer expectations and as digital-first, software-enabled vehicles become core to the mobility experience.

Harald Wimmer, Global Automotive Leader, PwC Germany, said:

“The vehicle is no longer defined by the steel that leaves the factory – it is increasingly being defined by software, digital services and data analytics. As the sector faces increased competition and technology re-shapes the mobility experience, automotive makers must be putting their digital strategies front-and-centre if they are to unlock growth.”

Almost half (46%) view entrants from adjacent industries – especially technology and energy – as a key source of competition over the next five years.

But the research finds a significant divide in how companies are positioned to respond: four-fifths (80%) of ‘future-fit’ automotives identified in PwC’s analysis report a high tolerance for strategic risk-taking, compared with less than half (49%) of other companies.

‘Future-fit’ companies show greater appetite for strategic risk and growth

As automotive companies face increased competitive pressure, almost two-thirds (64%) are pursuing ecosystem participation – the most frequently cited strategic move.

Among the top 20% of ‘future-fit’ companies identified in PwC’s research, this rises to 80%.

Much of that ecosystem focus will be around technology. Automotive companies expect technology companies to displace industrial manufacturers as their most important collaborators over the next five years. The proportion of original equipment manufacturers (OEMs) rating autonomous driving and advanced driver assistance systems (ADAS) as a top-three revenue source rises from 9% today to 24% in 2030.

‘Future-fit’ automotive companies are also more likely to report highly developed software engineering and AI capabilities (71% vs. 45%), to be expanding into new customer segments (86% vs. 71%), to have a high tolerance for strategic risk-taking (80% vs. 49%), and to be expanding into offerings beyond automotive (72% vs. 45%).

Yet the findings point to a tension between investing for today’s returns and funding tomorrow’s growth. While 76% of companies say they allocate capital to the highest-return initiatives, 73% say their manufacturing and operations investments are primarily aimed at productivity and efficiency. Just 12% say those investments are primarily aimed at growth and increasing market share.

Capability gaps add to the challenge. Half (51%) cite talent shortages and 45% cite current workforce skills among the biggest barriers to creating, delivering and capturing value, while AI and software engineering are among the capabilities respondents identify as most critical.

Electric vehicle production to swell as new growth markets emerge

Electric vehicle production is expected to swell – with battery electric vehicles (BEV) expected to grow from an average of 18% of production volume to 30% within five years. Traditional internal combustion engines (ICE) are projected to fall from 60% to 41%.

In China, the shift is far sharper – battery electric vehicles (BEVs) are expected to rise to 40% (up from 29%), while ICE falls to 29% (from 43%).

As the consumer landscape shifts, geography is also rapidly transforming where automotive companies are projected to see the most growth.

Less than one-third (26%) cite Western Europe as a top three growth market over the next five years (down from 44% today), while South Asia and Southeast Asia are projected to see the greatest growth – rising from 24% to 45%, and 31% to 44%, respectively.

At the same time, the traditional consumer is shifting. Respondents expect 33% of revenue to come from new customers within five years – such as commercial fleet operators, mobility service providers, and governments – up from 21% today.

Future-proofing automotive companies for the mobility age

For automotive companies to future-proof their businesses for the mobility age, the report suggests they should:

Reframe the strategic question from sector to domain – companies that continue to define themselves as vehicle manufacturers will be left behind.Become active participants in ecosystems – being embedded in an ecosystem is the fastest way to leverage cross-sector insight and expertise.Shift capital allocation logic from returns to options – ‘future-fit’ companies fund specific bets whose ROI is not yet visible while incumbents must build the new business while winding down the old.Think more like a technology company – automotives must look beyond the core product to the wider mobility experience.

Harald Wimmer, Global Automotive Leader, PwC Germany, concluded:

“Automotive executives understand the disruption underway – from software to AI to energy – but their ability to act decisively is constrained by governance rooted in legacy priorities. To succeed, automakers must evolve their governance to balance capital discipline with the agility and strategic options needed to fund the next wave of innovation.”

Notes to Editors

About PwC’s 2026 Global Automotive Outlook
PwC’s Global Automotive Outlook is based on a survey of 720 automotive executives across 33 countries and territories, with detailed analysis on China, Germany, India, Japan, and the United States. Conducted in Spring 2026, the research explores the challenges and opportunities facing the industry now and over the next five years, charting the capabilities and strategies that will make players ‘future-fit’ for the future. The survey identifies three distinct archetypes shaping the sector – inward-looking industrialists, growth-orientated diversifiers and product-focused digitisers, each with their own strengths and weaknesses. You can learn more about the archetypes and takeaways at www.pwc.com

About PwC 
At PwC, we help clients build trust and reinvent so they can turn complexity into competitive advantage. We’re a tech-forward, people-empowered network with more than 360,000 people in 130+ countries and territories. Across audit and assurance, tax and legal, deals and consulting, we help clients build, accelerate, and sustain momentum. Find out more at www.pwc.com.  

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RTX’s Pratt & Whitney Canada signs four-year PW127M maintenance agreement with AirBorneo Airways

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Work will be performed at the company’s newly expanded Singapore facility

SINGAPORE, Sept. 24, 2026 /PRNewswire/ — Pratt & Whitney Canada signed a four-year agreement with AirBorneo Airways to provide comprehensive maintenance, repair and overhaul (MRO) services for the PW127M engines powering its ATR 72-500 regional turboprops through 2030. AirBorneo operates its fleet of ATR 72-500 aircraft on the Rural Air Services network, a vital public service that connects remote and underserved communities across East Malaysia. Pratt & Whitney is an RTX (NYSE: RTX) business.

“We worked closely with AirBorneo to develop a maintenance solution that manages engine costs and supports high dispatch availability for these critical flights,” said Anthony Rossi, vice president, Customer Service, Pratt & Whitney Canada. “This agreement reinforces our commitment to advancing our MRO services and meeting customers’ evolving needs.”

AirBorneo’s engines will be primarily maintained at Pratt & Whitney Canada’s Singapore facility, a key hub for customer support across Asia-Pacific. Recent investments have expanded the site’s turboprop MRO capabilities, strengthening the company’s ability to provide more localized support to operators across the region.

“We value our relationship with Pratt & Whitney Canada and the proven quality and reliability behind its products and services,” said Megat Ardian Aminuddin, CEO of AirBorneo. “Having this support based in Singapore puts our engine maintenance and repairs close to home and our aircraft back in service faster. That confidence gives us the operational certainty we need to consistently serve our customers on our intra-Borneo routes where reliable air transport is a vital link for remote communities.”

The PW127M is part of Pratt & Whitney Canada’s PW100 engine family, which has provided regional turboprop operations for more than 40 years. PW100 engines have accumulated more than 200 million flight hours and power aircraft serving communities around the world.

About Pratt & Whitney
Pratt & Whitney, an RTX business, is a world leader in the design, manufacture and service of aircraft engines and auxiliary power units for military, commercial and civil aviation customers. Since 1925, our engineers have pioneered the development of revolutionary aircraft propulsion technologies, and today we support more than 90,000 in-service engines through our global network of maintenance, repair and overhaul facilities.

About RTX
With more than 180,000 global employees, we push the limits of technology and science to redefine how we connect and protect our world. With industry-leading capabilities, we advance aviation, engineer integrated defense systems for operational success, and develop next-generation technology solutions and manufacturing to help global customers address their most critical challenges. The company, with 2025 sales of more than $88 billion, is headquartered in Arlington, Virginia.

For questions or to schedule an interview, please contact corporatepr@rtx.com.

About AirBorneo Airways
AirBorneo Airways is Sarawak’s state-owned airline, committed to providing safe, reliable and affordable air connectivity across Malaysia and the region. Established in January 2026 following the transition from MASWings, the airline has expanded beyond Rural Air Services (RAS) with the introduction of jet operations to Kuala Lumpur and Singapore in July 2026.

Guided by its mission of “Connecting Communities, Empowering Growth,” AirBorneo remains committed to strengthening connectivity and supporting Sarawak’s economic growth. The airline operates ATR 72-500 turboprops powered by PW127M engines and Viking Air DHC-6-400 Twin Otters powered by PT6A-34 engines, and has eight ATR-600 aircraft powered by PW127XT Series engines on order.

 

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Quarterhill Introduces TOPAS-Registered Intersection Solution in United Kingdom

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Company expanding into the UK traffic signal market with the new TOPAS 2505B-registered version of its TMB-13X product

TORONTO, Sept. 24, 2026 /PRNewswire/ — Quarterhill Inc. (“Quarterhill” or the “Company”) (TSX: QTRH) (OTCQX: QTRHF) – a leading technology innovator providing next-generation, AI-driven Intelligent Transportation System (“ITS”) solutions – today announced its proprietary, multilane intersection radar “TMB-13X” has achieved TOPAS 2505B registration, a requirement for any traffic signal detection technology deployed in the UK. This accomplishment enables Quarterhill to provide UK transport authorities with a reliable, easy-to-use and cost-efficient product; enabling safer and more efficient roads with industry-leading deployment times.

Designed for complex, multilane intersections, the TMB-13X provides traffic authorities with an above-ground alternative to traditional inductive loop detection, helping reduce the roadwork, installation costs and traffic disruption associated with in-road sensors. The product can monitor vehicles and cyclists across multiple lanes; and uses up to nine configurable virtual detection loops based on speed, direction of travel, movement and presence. It also features a compact four-meter blind zone and an intuitive browser-based configuration interface accessible via Wi-Fi to enable faster deployment and simpler ongoing maintenance.

The United Kingdom is one of the most significant markets for traffic signal detection technologies in Europe. Transport for London alone operates approximately 6,400 traffic signal sites, including approximately 4,000 signalized junctions and 1,500 pedestrian crossings, supported by more than 16,000 traffic detectors.1 This registration builds on Quarterhill’s existing presence in the UK market, extending the Company’s ITS technologies into intersection detection alongside its established UK operations. With TOPAS approval now secured, Quarterhill can now offer the TMB-13X product to UK traffic signal controller manufacturers, system integrators and transport authorities across the country.

“Bringing together more than 30 years of radar-based product development in a solution designed to address the complexities of modern intersections, the TMB-13X reflects our continued focus on technologies that make transportation infrastructure safer and more efficient,” said Donna Bergan, Vice President of Intelligent Transportation Systems at Quarterhill. “Securing TOPAS registration means we can extend these capabilities to customers across the UK, providing traffic engineers with a flexible solution that can simplify installation and ongoing maintenance, while minimizing disruption to road users.”

The TOPAS registration reflects Quarterhill’s broader approach to international growth: adapting its ITS technologies to meet the specific regulatory and technical standards of each market it enters. Quarterhill’s Smart Transportation and Enforcement solutions are currently deployed across North America, Europe, Middle East and Asia-Pacific.

This milestone adds to continued momentum across Quarterhill’s ITS business. In August 2026, the Company reported its strongest quarter of profitability in more than three years. Quarterhill is also progressing toward the expected fourth-quarter 2026 closing of its previously announced acquisition of Conduent’s tolling solutions business, which is expected to significantly expand the Company’s scale and further advance its strategy to build a larger, more focused ITS platform.

The TOPAS-registered TMB-13X is now available for order.

About Quarterhill

Quarterhill is a global leader in the Intelligent Transportation Systems (ITS) industry, advancing mobility through smart infrastructure solutions that reduce congestion, improve roadway safety, and create more sustainable travel. Each year, Quarterhill’s platforms process billions of transactions; perform compliance and safety inspections on millions of commercial vehicles; and enable transportation agencies worldwide to optimize thousands of lanes of traffic to improve travel for everyone. Leveraging advanced artificial intelligence and machine-learning technologies, Quarterhill’s platform delivers automation and predictive insight to help agencies manage transportation networks more efficiently. By working in close partnership with governments, communities, and industry leaders, Quarterhill is building today’s connected roadways, while shaping the next generation of intelligent, resilient mobility. Quarterhill is listed on the TSX under the symbol QTRH and on the OTCQX Best Market under the symbol QTRHF. For more information, please visit: www.quarterhill.com.

Forward-looking Information

This news release contains forward-looking information and forward-looking statements within the meaning of applicable Canadian securities laws (collectively, “forward-looking statements”). Such forward-looking statements relate to future events, conditions or future financial performance of ‎Quarterhill based on future economic conditions and courses of action. All statements other ‎than statements of historical fact may be forward-looking statements. Such forward-looking statements ‎are often, but not always, identified by the use of any words such as “seek”, “anticipate”, “budget”, ‎”plan”, “goal”, “expect” and similar expressions. This news release contains forward looking statements relating to, among other things, the adoption of TMB-13X in the UK market, the impact and results from the use of the TMB-13X, and the closing and impact of the Conduent acquisition.

Forward-looking statements involve known and unknown risks, assumptions, ‎uncertainties and other factors that may cause actual results or events to differ materially from those ‎anticipated in such forward-looking statements. Material risk factors that could cause actual results to differ materially from the forward-looking statements contained in this news release include, among others, TMB-13X not being adopted by the UK market, the failure to complete the Conduent acquisition as planned or realize the expectations on the Company’s results, demand for Quarterhill’s products and services; general economic and market conditions; competition; risks relating to technological advances and cyber-security; and other risks set forth in the Company’s most recent annual information form available on SEDAR+ at www.sedarplus.ca. The Company believes the expectations reflected in ‎the forward-looking statements are reasonable, but no assurance can be given that these expectations ‎will prove to be correct and such forward-looking statements included in this news release should not be ‎unduly relied upon.‎ Material factors and assumptions used to develop the forward-looking statements contained in this news release include, among others: Quarterhill’s ability to execute on its business plan; demand for Quarterhill’s products and services; operating assumptions; and financial projections and cost estimates. Quarterhill has no intention, and undertakes no obligation, to update or revise any forward-looking statements, whether as a result of new information, future events or otherwise, except as required by law.

1 Source: Transport for London.

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TIER IV releases a reference design for autonomous racing kart systems, used by Autonomous Driving AI Challenge participants

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TOKYO, Sept. 24, 2026 /PRNewswire/ — TIER IV, the pioneering force behind open-source software for autonomous driving, has developed a reference design for autonomous racing kart systems and released its software and design information in a public GitHub repository. Built on Autoware, open-source software for autonomous driving, the reference design is provided alongside an environment that supports development and evaluation from simulation to real-world vehicle testing. The Autonomous Driving AI Challenge, organized by the Society of Automotive Engineers of Japan (JSAE), was held from July to September 2026, and a total of 240 teams comprising approximately 600 participants used the reference design as a common development platform throughout the qualifying and final rounds. Through this initiative, TIER IV supports open technology development and the cultivation of the next generation of engineers.

Developing autonomous driving systems requires integrating a range of components, including vehicles, sensors, onboard computers, and software, into a system capable of operating in the real world. Evaluating the resulting technologies also requires simulation and real-world vehicle testing environments. Building these development and evaluation environments from scratch can place a significant burden on developers entering the field of autonomous driving, creating barriers to technology development and talent cultivation.

The Autonomous Driving AI Challenge provides students and working professionals with varying levels of technical experience an opportunity to develop autonomous driving technologies. By enabling participants to gain hands-on experience in autonomous driving software development and put their technical skills to the test, the competition aims to foster talent and encourage broader participation in the field. The final rounds held on September 19-20, 2026, featured racing karts and included both simulation-based and real-world vehicle challenges.

TIER IV developed the reference design for autonomous racing kart systems to give developers a common starting point that they can modify and extend to suit their objectives. Built on Autoware, the reference design includes autonomous driving software, a simulator, and other design information released on GitHub. By combining these publicly available resources with real vehicles and development and evaluation environments, TIER IV enabled participants to focus on developing and improving autonomous driving algorithms and AI models without having to build an entire system from scratch.

The reference design and its associated development and evaluation environments comprise the following main components:

Vehicle and hardware configuration: TOM’S EV racing kart, global navigation satellite system (GNSS), inertial measurement unit (IMU), and onboard computerAutonomous driving software: Open-source software for racing karts built on AutowareSimulation environment: A publicly available simulator that reproduces racing kart driving, together with an online environment for evaluating developed software during the competitionDevelopment and evaluation tools: A web platform supporting software setup and execution, as well as the review of driving results

The autonomous driving software, simulator, and design information are available through the public GitHub repository. Real vehicles and the competition’s online evaluation environment were provided in combination with these publicly available resources.

At the competition, 240 teams comprising approximately 600 participants used the reference design as a common technical foundation, developing and improving autonomous driving systems through their own ideas and expertise. Their exploration of different technical approaches from a shared foundation provided a practical example of how an open development platform can support technology development and talent cultivation.

TIER IV is working to realize the democratization of autonomous driving by expanding the open-source ecosystem centered on Autoware worldwide. Going forward, TIER IV will continue to expand its reference design offerings and enhance development and evaluation environments through open source. By collaborating with partners across industry, research, and education, the company aims to grow an ecosystem that supports the real-world deployment of autonomous driving.

About TIER IV

TIER IV stands at the forefront of deep tech innovation, pioneering Autoware, open-source software for autonomous driving. With a comprehensive suite of platforms and services built around Autoware, TIER IV provides everything from software development and vehicle procurement to operational support. Through the Autoware ecosystem, TIER IV works with partners worldwide to shape the future of intelligent vehicles with open-source software, aiming to create mobility that is safer, more sustainable, and accessible to all.

Media Contact
pr@tier4.jp

The word marks and logos of TIER IV are trademarks or registered trademarks of TIER IV, Inc. in Japan and other countries. All other company names, product names, service names, and logos referenced herein are trademarks or registered trademarks of their respective owners.
Autoware is a registered trademark of the Autoware Foundation.

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SOURCE TIER IV, Inc.

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