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Trinasolar Unveils Agrivoltaics Project in Japan, Driving Renewable Energy and Agriculture Synergy

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KYOTO, Japan, Aug. 26, 2024 /PRNewswire/ — Trinasolar, a global leader in smart photovoltaic (PV) and energy storage solutions, is proud to announce the commercial operation of its latest agrivoltaics project in Fukuchiyama, Kyoto Prefecture. Developed by its International System Business Unit (ISBU) arm, which specializes in the production and delivery of utility-scale solar projects for the global market, this large-scale initiative represents a significant milestone for its operations in the Japanese market, demonstrating the potential of agrivoltaics to harmonize renewable energy production with agricultural activities.

The Fukuchiyama project utilizes 3,392 of Trinasolar’s ultra-high power Vertex N 720W series modules (TSM-690NEG21C.20), incorporating the latest 210mm wafer technology and high-efficiency n-type i-TOPCon cells. These state-of-the-art modules are designed to maximize energy output, with maximum efficiency of 23.2%, maintaining low levelized cost of electricity (LCOE). As a result, the project is expected to generate 2,700MWh of clean energy annually, reducing carbon dioxide emissions by approximately 1,760 tons each year.

Empowering Agrivoltaics – Trinasolar’s PV+ Model

The project is a prime example of agrivoltaics, where agricultural land is used for both crop production and solar energy generation. In this case, the solar farm supports the cultivation of Japanese yam, also known as ebi-imo, a crop native to the region. With its low light saturation point, Japanese yam thrives beneath the shade of the solar module. In addition, it depends heavily on soil moisture, and is typically grown in paddy fields. The shade provided by the modules reduces soil moisture evaporation, ensuring the crops have sufficient water for growth.

Trinasolar’s innovative “PV+” model is key to this success. The modules are mounted at a minimum height of 2.35 meters above the ground, with rows spaced to allow the use of agricultural machinery like tractors and rotary tillers. This careful design ensures that agricultural operations can continue seamlessly beneath the modules, fostering sustainable land use and contributing to the local economy.

As Japan seeks to achieve carbon neutrality by 2050, the Japan Photovoltaic Energy Association (JPEA) has projected that one-quarter of the country’s solar power generation will come from agricultural land. Trinasolar’s agrivoltaics project in Kyoto stands as a testament to the viability of this approach, demonstrating how renewable energy can support other critical industries, such as agriculture, in the pursuit of a net-zero future.

This innovative agrivoltaics project underscores Trinasolar’s commitment to supporting Japan’s clean energy goals while contributing positively to the environment and local communities. As agrivoltaics gains momentum worldwide, this project serves as a valuable demonstration of sustainable land use practices, offering insights for future developments in the field and paving the way for a sustainable future.

About Trinasolar

Founded in 1997, Trinasolar is the world leading PV and smart energy total solutions provider. The company engages in PV products R&D, manufacture, and sales; PV projects development, EPC, O&M; smart micro-grid and multi-energy complementary systems development and sales, as well as energy cloud-platform operation. In 2018, Trinasolar launched its Energy IoT brand, established the Trina Energy IoT Industrial Development Alliance together with leading enterprises and research institutes in China and around the world and founded the New Energy IoT Industrial Innovation Centre. With these actions, Trinasolar is committed to working with its partners to build the energy IoT ecosystem and develop an innovation platform to explore New Energy IoT, as it strives to be a leader in global intelligent energy. In June 2020, Trinasolar listed on the STAR Market of Shanghai Stock Exchange.

For more information, please visit https://www.trinasolar.com/en-apac/

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SOURCE Trina Solar Energy Development Pte. Ltd.

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/C O R R E C T I O N — Applied Intuition, Inc./

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In the news release, Applied Intuition Collaborates with Heidelberg Materials to Advance Innovation in Quarry Operations with Autonomous Haulage Fleets, issued 30-Apr-2026 by Applied Intuition, Inc. over PR Newswire, we are advised by the company that changes have been made. The complete, corrected release follows, with additional details at the end:

Applied Intuition Collaborates with Heidelberg Materials to Advance Innovation in Quarry Operations with Autonomous Haulage Fleets

Deployment brings intelligent, vehicle-based autonomy to Australia, establishing a new operating model for construction and mining environments.

SUNNYVALE, Calif., April 30, 2026 /CNW/ — Applied Intuition, Inc., a leader in physical AI, today announced its collaboration with Heidelberg Materials, one of the world’s largest integrated manufacturers of building materials and solutions, to deploy autonomous haulage systems for Heidelberg Materials’ quarry operations, starting at a site in Australia.

Applied Intuition will provide its Self-Driving System (SDS) for Construction to support autonomous haulage operations within Heidelberg Materials’ fleet of construction and mining vehicles in Australia. The deployment marks the next real-world application of Applied Intuition’s autonomy platform in industrial environments. Upon successful completion, it will support the expansion of autonomous operations within Heidelberg Materials’ broader Australian network.

The collaboration also challenges the standard industry model. While autonomy solutions traditionally target the largest quarry sites, this system is designed for smaller operations, including those running just two 40-ton trucks, making it deployable across quarry sites of varying size worldwide.

“No two quarry or construction sites operate the same way, with different layouts, constraints and economics,” said Qasar Younis, co-founder and CEO of Applied Intuition. “We’ve built our platform to adapt to that reality. This partnership shows we can take the same core system used in large mining operations and apply it to smaller, infrastructure-constrained quarry sites, scaling it across hundreds of unique locations.”

For Heidelberg Materials, the partnership is aimed at enhancing safety and operational performance. It also reflects the need for an autonomy solution that can operate at large sites and smaller ones too, whereas traditional autonomous haulage systems are often too infrastructure-heavy or costly to scale. For Applied Intuition, it serves as a proof point that its autonomy platform is designed not just for one-off deployments, but for global scale across construction, quarry and mining environments of any size.

Applied Intuition’s system runs directly on the vehicle, with integrated perception, decision-making and safety systems onboard, enabling reliable operation without constant connectivity or heavy site infrastructure.

The collaboration builds on Applied Intuition’s growing presence in construction and mining autonomy and reinforces its broader physical AI strategy. The same core platform has already been deployed in other industries, including trucking and defense, with learnings from each domain contributing to continuous system improvements. Applied Intuition’s SDS platform strategy also enables the company to bring technologies proven in other domains into construction and mining, helping accelerate development and deployment.

Through this project, Applied Intuition demonstrates the range of its autonomy platform, from some of the largest mining trucks in the world to smaller quarry vehicles operating in constrained, lower-infrastructure environments. Together, these deployments highlight the company’s approach to building scalable autonomy for construction and mining from the ground up.

To learn more about how Applied Intuition is building the future of construction autonomy, visit applied.co.

About Applied Intuition
Applied Intuition, Inc. is powering the future of physical AI. Founded in 2017 and now valued at $15 billion, the Silicon Valley company is creating the digital infrastructure needed to bring intelligence to every moving machine on the planet. Applied Intuition services the automotive, defense, trucking, construction, mining and agriculture industries in three core areas: tools and infrastructure, operating systems and autonomy. Eighteen of the top 20 global automakers, as well as the United States military and its allies, trust the company’s solutions to deliver physical intelligence. Applied Intuition is headquartered in Sunnyvale, California, with offices in Washington, D.C.; San Diego; Ft. Walton Beach, Florida; Ann Arbor, Michigan; London; Stuttgart; Munich; Stockholm; Gothenburg, Sweden; Bangalore; Seoul; and Tokyo. Learn more at applied.co.

Correction: An earlier version of this release incorrectly stated the location of the site noted in the first paragraph.

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SOURCE Applied Intuition, Inc.

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MOREH Demonstrates Production-Ready LLM Inference on Tenstorrent Galaxy, Achieving DGX A100-Class Performance with Improved Cost Efficiency

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Reduces HBM Costs with GPU–Tenstorrent Heterogeneous Distributed Serving
First unveiled at Tenstorrent’s launch event, TT-Deploy, in San Francisco on May 1

SANTA CLARA, Calif., May 1, 2026 /PRNewswire/ — Moreh, an AI infrastructure software company, led by CEO Gangwon Jo, announced that it has successfully validated LLM inference performance on the Tenstorrent Galaxy Wormhole system using its proprietary ‘MoAI Inference Framework.’

Based on tests across leading Mixture-of-Experts (MoE) models—including GPT-OSS, Qwen, GLM, and DeepSeek—Moreh achieved LLM inference performance on Tenstorrent Galaxy Wormhole matching or surpassing NVIDIA DGX A100-class systems, demonstrating a compelling alternative to conventional GPU-centric AI infrastructure.

Moreh also improved cost efficiency by implementing a disaggregated serving architecture that combines GPUs with Tenstorrent Wormhole chips. By utilizing Tenstorrent processors as dedicated prefill accelerators, the company reduced reliance on high-cost HBM and lowered overall infrastructure costs.

The results were first unveiled at Tenstorrent’s launch event, TT-Deploy, held on May 1 in San Francisco.

As a strategic partner of Tenstorrent and a major external contributor to Metalium, Moreh showcased a live LLM inference demo at the event. Building on its experience operating AMD GPU-based production environments in real-world data centers, the company presented its latest technical achievements in ‘Production-Ready LLM Inference on Tenstorrent Galaxy.’

MoAI Inference Framework is a disaggregated inference solution that enables unified operation of heterogeneous GPUs and NPUs—including NVIDIA, AMD, and Tenstorrent—within a single cluster. This allows enterprises to build flexible AI infrastructure strategies without vendor lock-in.

Moreh CEO Gangwon Jo stated, “Achieving production-grade LLM inference performance and stability on Tenstorrent-based systems marks a significant milestone,” and added, “We will continue to enhance performance through deeper optimization across heterogeneous architectures and closer integration with Tenstorrent NPUs.”

Moreh is developing its own core AI infrastructure engine and, through its foundation LLM subsidiary Motif Technologies, is building end-to-end capabilities spanning both infrastructure and model domains. Simultaneously, the company is making its mark in the global market through collaborations with key partners such as AMD, Tenstorrent, and SGLang.

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SOURCE Moreh

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US Startup PerZeption Inc. Announces Collaboration with Alcon Research

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BOSTON, MA, May. 1, 2026 /PRNewswire/ — Advancements in vision correction evaluation require methods that offer both precision and efficiency in detecting clinically meaningful visual differences. Addressing this need, PerZeption is set to present new data validating its AIM+ CSF modeling technology at the Association of Research in Vision and Ophthalmology (ARVO) annual meeting.

Attendees are invited to learn more about this innovative approach during the poster session on May 4, 2026, from 11:15 AM to 1:00 PM, at posterboard #0941.

“We are very excited to collaborate with Alcon, one of the largest companies within the Ophthalmology sector worldwide. “, Dr. Jan Skerswetat said. “The results, presented by Dr Derek Nankivil, indicate that our technology enables rapid, repeatable, and highly sensitive assessment of contrast vision.”

The abstract, titled ‘AIM+ CSF modeling enables efficient detection of clinically meaningful visual differences,’ outlines how PerZeption’s technology supports sensitive, low-burden visual assessment for vision correction evaluation. Data indicates that with approximately six adaptive displays of stimuli and two repeats, studies show around 20 subjects can achieve 90% power to detect a 1 JND (Just Noticeable Difference) change in AULCSF (Area Under the Log Contrast Sensitivity Function). This research also demonstrates AIM+ CSF’s stable repeatability in less than 3 minutes, absence of bias, and robust performance, validating its role as an effective tool for objective visual performance evaluation.

This joint effort highlights a shared dedication to advancing ophthalmology research and developing precise tools for visual assessment. The ARVO annual meeting serves as the world’s foremost event for ophthalmology research, offering a vital platform for sharing scientific breakthroughs and fostering dialogue within the global vision science community.

“In addition to all the exciting research presentations that leverage PerZeption technology at this years’ ARVO meeting, we are also proud to be showcasing PerZeption’s battery of functional tests at our booth, #4027.” Dr. Skerswetat added and noted that there will be opportunities to try out our technology.

This presentation at ARVO represents a significant step in the validation and recognition of PerZeption’s contributions to advanced visual assessment technologies.

About PerZeption Inc
PerZeption delivers vision testing with a rapid, self-administered, and adaptive psychophysical platform delivered via cloud-based software on standard tablets or all-in-one computers. Our flagship platform, Angular Indication Measurement (AIM), enables testing of over 20 visual functions. Our novel approach equips researchers and clinicians with a comprehensive range of visual functions and introduces new tests for which there are no currently available devices. We reduce chairtime. Self-administered tests on a single device in combination with proprietary methods that rapidly assess vision, reduce user’s burden and require minimal training or space, unlike bulky, specialized single-use devices. Finally, cloud-based delivery supports secure in-clinic and remote testing, ensuring consistent, trackable results for clinicians and pharmaceutical companies. 

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SOURCE PerZeption

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