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Subaru Wins CNCF End User Case Study Contest for Accelerating AI Development with Cloud Native Infrastructure

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New architecture reduced AI container image pull times by 60x while automating workflows for next-generation driver assistance systems

Key Highlights

Subaru reduced pull times for 30+ GB AI container images from approximately three hours to three minutes, a 60x improvement, by optimizing its Kubernetes networking architecture using Envoy Gateway.By adopting GitOps with Argo CD and Helmfile, Subaru standardized application deployments and improved reproducibility across its AI development environments.Using Argo Workflows, Subaru automated its ML pipelines, improving operational efficiency while accelerating development of next-generation EyeSight, its advanced driver assistance systems (ADAS).

YOKOHAMA, Japan, July 28, 2026 /PRNewswire/ — KUBECON + CLOUDNATIVECON — The Cloud Native Computing Foundation® (CNCF®), which builds sustainable ecosystems for cloud native software, today announced Subaru, one of the world’s leading automobile manufacturers, as the winner of the CNCF End User Case Study Contest for KubeCon + CloudNativeCon Japan 2026.

Subaru received the award for transforming the AI infrastructure behind its next-generation EyeSight development platform. By combining Kubernetes with multiple CNCF technologies such as Envoy Gateway, Gateway API and MetalLB, the company dramatically improved developer productivity, infrastructure efficiency and machine learning (ML) reproducibility. By optimizing the delivery of large AI container images, adopting GitOps practices and automating end-to-end ML workflows, Subaru created a scalable cloud native platform that enables faster iteration on AI models while improving operational consistency.

“As organizations build increasingly sophisticated AI applications, cloud native technologies provide the foundation for making those workloads scalable and operationally efficient,” said Chris Aniszczyk, CTO, CNCF. “Subaru demonstrates how combining Kubernetes with projects like Argo, Envoy, Helm, Harbor and MetalLB can solve real world infrastructure challenges while accelerating AI innovation. It’s an excellent example of open source cloud native technologies delivering measurable business impact.”

Developing AI models for Subaru’s next-generation EyeSight required continuous cycles of data processing, model training, validation and inference. As those workloads grew in scale and complexity, Subaru’s existing on-premises GPU environment became a bottleneck. AI container images exceeding 30 GB routinely required hours to download before workloads could begin. Deployment processes relied on manually executed scripts rather than declarative configuration and complex machine learning pipelines lacked a unified orchestration framework. All made it difficult to achieve reproducible, efficient execution.

“We wanted to build an AI development platform that removed operational friction and enabled our engineers to focus on improving model accuracy instead of managing infrastructure,” said Ryoji Kobayashi, DevOps engineer of ADAS development department, Subaru. “By embracing cloud native technologies and GitOps practices, we’ve significantly reduced development bottlenecks while creating a more reproducible, scalable platform for machine learning. The improvements we’ve achieved are helping us accelerate innovation for next-generation EyeSight.”

To address these challenges, Subaru built a cloud native AI platform on Kubernetes using multiple CNCF projects. By combining Envoy Gateway, Gateway API and MetalLB, the company significantly reduced pull times for large AI container images from approximately three hours to just three minutes; an impressive 60x improvement. Subaru also adopted a GitOps workflow with Argo CD and Helmfile, building on its existing Helm-based deployments to standardize application delivery and centrally manage application definitions. Argo Workflows automated the end-to-end machine learning pipeline, improving reproducibility and operational efficiency.

Subaru continues to expand its use of Kubernetes and CNCF technologies to advance its AI infrastructure. As AI workloads become more complex, the company plans to build on its cloud native foundation to further improve developer productivity, platform capabilities and operational efficiency.

Subaru’s achievement was announced on stage during a keynote session at KubeCon + CloudNativeCon Japan, where Ryoji Kobayashi delivered a keynote to showcase the details of the winning use case.

To review the complete architectural implementation and downstream results, read the full Subaru case study.

Additional Resources

CNCF NewsletterCNCF Twitter/XLearn About CNCF Membership Learn About the CNCF End User Community

About Cloud Native Computing Foundation

Cloud native computing empowers organizations to build and run scalable applications with an open source software stack in public, private, and hybrid clouds. The Cloud Native Computing Foundation (CNCF) hosts critical components of the global technology infrastructure, including Kubernetes, Prometheus, and Envoy. CNCF brings together the industry’s top developers, end users, and vendors and runs the largest open source developer conferences in the world. Supported by nearly 800 members, including the world’s largest cloud computing and software companies, as well as over 200 innovative startups, CNCF is part of the nonprofit Linux Foundation. For more information, please visit www.cncf.io.

Media Contact
pr@cncf.io 

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SOURCE Cloud Native Computing Foundation

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Cosmofluencer and World Space Academy Team Up for Global Exposure in Space Education

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MELBOURNE, Australia, July 29, 2026 /PRNewswire/ — Australia-based Centelon Group’s astronomy outreach arm – Cosmofluencer, has recently teamed up with the World Space Academy (WSA) with the common goal of strengthening space education among the next generation.

The idea is to blend Cosmofluencer’s hands-on science-communication and student-engagement experience with World Space Academy’s international education frameworks to make astronomy accessible to all.

The partnership is dedicated to inspiring students, promoting innovation, and fostering international collaboration. This will be achieved through interactive summer workshops, project-based learning modules, and science-communication training that exposes students to real-world space topics and career pathways.

“Through this collaboration, we aim to make astronomy more accessible, inspiring, and future-ready for students by combining hands-on outreach with international learning frameworks,” said Navdeep Singh, Founder – World Space Academy.

The 14 Days ISEI Summer Workshop

The first offering from the partnership is a Summer Workshop from the International Space Education Institute (ISEI), a leading organization in Leipzig, Germany. Founded in 2005, ISEI was set up to inspire young adults to take up careers in Space.

The ISEI, through WSA, annually offers the Summer Workshop, as a 14-day immersive session on-campus, that blends theoretical knowledge with industrial exposure. With a focus on rover design and fabrication, this one-of-a-kind workshop seeks to introduce students to space technology and innovation through hands-on learning.

“At ISEI, we believe the future of space exploration begins with young minds who are given the chance to build, experiment, and dream boldly,” said Ralf Heckel, Founder of ISEI. “Through this program, we want students to experience the excitement of rover design while discovering how innovation, teamwork, and curiosity can shape the space technologies of tomorrow.”

The program is open to schools that value future-ready learning for their students. Based on the pre-determined eligibility criteria, a batch of 15 students will be selected to participate in the program to be conducted in Leipzig, Germany.

Besides the daily fabrication workshops and team assignments, the program also seeks to offer students a glimpse into German culture through city experiences.

Why This Program Matters

The global space sector is entering a period of remarkable growth, driven by increasing government investment and rising private-sector participation. As the industry expands, it is creating new opportunities across engineering, robotics, manufacturing, data systems, and future-focused innovation.

Yet space remains underrepresented in school curricula, leaving a gap between classroom learning and real-world industry exposure. Workshops like this help bridge that gap by making space education more accessible, practical, and inspiring for the next generation.

“Such programs are essential if we want young learners to be truly prepared for the careers of tomorrow,” says Cosmofluencer founder Paul Savio. “They give students early exposure to space science, hands-on learning, and the confidence to explore a future in this fast-growing field.”

For schools and parents, the value is clear: this is not just an educational experience, but a meaningful step toward preparing children for the emerging opportunities in the space economy.

Discover more on the program and how to take part – https://cosmofluencer.space/wsa-international-summer-workshop-program/

About Cosmofluencer

Cosmofluencer (https://cosmofluencer.space/) is a vibrant network of space enthusiasts brought together by a shared passion for exploring the cosmos and uncovering its mysteries. Our mission is simple: to demystify space science and build an inclusive community of astrophiles, making space knowledge accessible to all.

About World Space Academy

The World Space Academy (https://worldspaceacademy.com/) was constituted to enhance the standards and opportunities in the field of Space Exploration and Research. The company is committed to providing a common platform for exchange of ideas for collaborative research that expands learning to the roots of society.

Media Contact

Cosmofluencer Team
helpdesk@cosmofluencer.com

 

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Xinhua Silk Road: 2026 Li-Ning Cup National Badminton Team Championship held in Shenyang, NE China

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BEIJING, July 29, 2026 /PRNewswire/ — Recently, the 2026 Li-Ning Cup National Badminton Team Championship was held in Shenyang, capital of northeast China’s Liaoning Province for the third consecutive year.

21 elite provincial teams and nearly 300 professional athletes gathered at the Liaoning Gymnasium to compete for team glory.

By creating a unique experience featuring “Traveling with Sports Events”, Shenyang took badminton as the medium and promoted the integrated development of culture, tourism, sports and commerce.

Original link: https://en.imsilkroad.com/p/351513.html

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SOURCE Xinhua Silk Road

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LONGi BC Technology Powers Two World-Leading Solar Racing Teams at the 2026 Elektrek American Solar Challenge

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XI’AN, China, July 29, 2026 /PRNewswire/ — LONGi is strengthening its commitment to innovation in solar mobility by supporting two of the world’s leading solar racing teams at the 2026 Elektrek American Solar Challenge (ASC), one of North America’s premier solar-powered endurance competitions. This year’s ASC takes competitors from Minnesota to Texas, with much of the route following the historic Route 66 corridor.

Taking place from July 25 to August 1, the ASC challenges teams to cover the greatest cumulative distance over eight days, rather than compete for outright speed. As they traverse diverse climate zones and complex terrain, teams must continuously optimize energy management and strategic decision-making throughout the endurance challenge.

For LONGi, the competition serves as more than a race — it is a real-world platform for validating and advancing next-generation photovoltaic technologies.

Expanding Partnerships with Two of the World’s Leading Solar Racing Teams

Following its collaboration with Belgium’s Innoptus Solar Team at the 2025 Bridgestone World Solar Challenge (BWSC), LONGi has further strengthened its technical collaboration within the global solar racing community.

For the 2026 season, LONGi is partnering with both Belgium’s Innoptus Solar Team and the Netherlands’ Delft Solar Team. Both teams ranked among the top three at the 2025 BWSC and represent the only two European teams competing in this year’s Elektrek American Solar Challenge.

The expanded collaboration reflects LONGi’s continued commitment to working alongside global innovators to explore the potential of photovoltaic technology through real-world engineering challenges.

High-Efficiency BC Technology at the Core

Solar racing represents one of the most challenging applications for photovoltaic technology. With extremely limited surface area available on the vehicle, every solar cell must achieve maximum conversion efficiency while maintaining reliability under dynamic operating conditions, curved vehicle surfaces, temperature variations, and long-distance endurance challenges.

To meet these requirements, LONGi provides tailored BC (Back Contact) technology solutions for both teams.

Innoptus Solar Team is equipped with LONGi’s customized high-efficiency BC flexible modules, specifically designed for the curved surfaces and lightweight architecture of solar race cars. Meanwhile, Delft Solar Team integrates LONGi’s high-efficiency BC solar cell strings into its vehicle’s energy system.

As the vehicle’s sole direct energy source, the photovoltaic system determines how effectively sunlight can be converted into usable power. High conversion efficiency, lightweight design, and operational reliability provide the foundation for innovations in aerodynamics, energy management, and vehicle control.

Technology, Strategy and Teamwork: Making Peak Performance Possible

Achieving peak performance in the Elektrek American Solar Challenge requires more than advanced photovoltaic technology alone. As the foundation of every solar race car, high-efficiency PV technology determines how much energy the vehicle can capture from sunlight and directly influences the power available throughout the journey.

Beyond the photovoltaic system, teams must continuously balance energy management, route strategy, and driving decisions based on changing sunlight conditions, weather patterns, and terrain. Every choice plays a role in maximizing the vehicle’s potential and extending its range throughout the eight-day challenge.

Peak performance is also made possible through close collaboration between drivers, engineers, and technology partners. By combining technical expertise, strategic thinking, and teamwork, these collaborations transform innovative concepts into real-world performance.

Through its partnerships with leading solar racing teams, LONGi continues to explore the possibilities of high-efficiency photovoltaic technology in demanding environments, gaining valuable insights that help advance future solar applications.

Driving Innovation Beyond the Race

LONGi’s partnerships with leading solar racing teams are built on technical collaboration and co-creation rather than sponsorship alone.

The company views solar motorsport as an innovation platform where advanced photovoltaic technologies can be validated, refined, and further developed under real operating conditions.  technology innovation, combining expertise across industries to accelerate breakthroughs in photovoltaic performance.

The value of these partnerships extends beyond the race itself. By working together with engineers, researchers, and innovators around the world, LONGi aims not only to provide advanced solar technologies, but also to foster an open innovation ecosystem where collective insights and collaboration help expand the boundaries of what solar energy can achieve.

As the global energy system evolves toward a more sustainable and integrated future, LONGi remains committed to advancing photovoltaic innovation, strengthening collaboration across the energy ecosystem, and unlocking new possibilities for a cleaner energy transition.

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SOURCE LONGi

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