China-based solar manufacturer Longi is shifting from a multi-vendor system design to a unified solar-plus-storage architecture built around in-house technologies.
New research from the University of New South Wales shows that PV module degradation varies widely with system design and location, driven by UV exposure, temperature, humidity, and atmospheric conditions. Tropical and desert regions face the highest stress, highlighting the need for climate-specific testing and system design.
Midea has launched a compact indoor air-source heat pump for retrofit and space-constrained homes. The R290-based system offers up to 4.45 kW output, a coefficient of performance of 4.5 and smart PV-compatible controls.
The “lab” session at Battery Business & Development Forum 2026 made transparent how different stakeholders evaluate and view energy storage projects between standalone and co-located options, and where views diverged.
Research from Germany analyzed sentiment in online news coverage to explore how heat pumps are portrayed in German public discourse. It found that while public perception is generally positive, it is neither uniform nor stable, and dipped significantly during debates around Germany’s heating law in 2023.
France’s Association Environnement Juste has proposed a storage mandate for renewables projects exceeding 10 kWp in order to integrate flexibility at the source. The association argues European sodium-ion batteries could present an economically and environmentally viable solution, capable of stabilizing grids without depending on imported metals.
Available in 80 W and 108 W versions using high-efficiency SunPower Maxeon cells, the kit offers wind resistance up to 25 m/s and easy installation on unused boat surfaces, according to the manufacturer.
Cornell University researchers demonstrated that tracking solar panels in agrivoltaic systems can protect crops from wind damage while allowing airflow, outperforming traditional single-row tree windbreaks. They also proposed a new lowered-first-row panel design that improves wind protection, achieving up to 86% reduction in shelter-zone wind speeds under extreme conditions.
Researchers in India demonstrated that ion beam implantation enables precise boron doping in silicon solar cells, reducing defects and improving charge transport. The proposed approach could support more efficient and reproducible p–n junctions, offering a pathway to higher-performance silicon photovoltaics.
An IEA-PVPS report finds that solar power above 60° North is not only viable but rapidly expanding, driven by cold-climate performance gains, bifacial technologies, and rising energy security needs. While challenges like extreme seasonality, snow, permafrost, and scarce data remain, Arctic PV is emerging as a critical—and technically distinct—frontier for global solar deployment.
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