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Huawei reshaping technological paradigm for competitiveness

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During MWC Barcelona 2022, Huawei’s Rotating Chairman Guo Ping spoke on the company’s plan to continue its globalization strategy and increase its strategic investment into foundational technologies. Through this investment, Huawei hopes to reshape the fundamental theories, architecture, and software that underpin its industry, increase its mid-to long-term competitiveness, and ensure the longer-term sustainability of the ICT industry.

In the keynote speech he delivered online, titled “Just Look Up, Let’s Light Up the Future,” Guo focused on two major sources of both challenge and opportunity in the world: digitalization and carbon neutrality.

Forecasts show that over 50% of global GDP will be digitalized in 2022. As the global digital economy develops rapidly, the demand for digital products and services has exceeded expectations. Guo explained that as Shannon’s theorem and the von Neumann architecture continue hitting severe bottlenecks, the industry must explore new theories and architectures to reshape the technological paradigm to achieve digital sustainability.

On carbon neutrality, Guo said, “Connectivity density and computing power determine the strength of the digital economy, but it should also maintain long-term vitality. So, we need to consider a new dimension, carbon reduction.”

Huawei currently adheres to a “More Bits, Less Watts” strategy in this area. In addition to improving its fundamental digital capabilities, Huawei has committed to making its products 2.7 times more energy efficient by making breakthroughs in areas like theories, materials, and algorithms. Through advances like these, the ICT industry is able to help other industries reduce their own carbon footprints. In fact, this reduction will be 10 times larger than the carbon footprint of the ICT industry itself.

Guo also said that Huawei is significantly increasing strategic investment into foundational technologies and working with its partners to reshape the technological paradigm in three areas: fundamental theories, architecture, and software. This investment will gradually be reflected in the competitiveness of the company’s products, which they hope will support the long-term and sustainable development of both the company and the ICT industry as a whole.

This investment is also notably focused on helping the company get closer to and maybe exceed Shannon’s Limit. By exploring new theories and technologies, like next-generation MIMO and wireless AI, Huawei is able to push its technologies ever closer to Shannon’s Limit. At the same time, Huawei’s research into new theories like semantic communications will provide the industry with guidance on new fundamental theories.

Huawei is also developing exciting new architectures. Huawei is currently integrating photonic and electronic technologies and design peer-to-peer architectures to solve technological challenges or technique bottlenecks.

In terms of software, Huawei is building AI-centered, full-stack software and a new software ecosystem to meet the drastically rising demand for computing capacity caused by explosive growth of AI.

Guo finally explained that great user experience comes from software-hardware synergies. He used two examples to show how Huawei applies this concept to ICT product development and technological innovation for network evolution. First, optimized algorithms for AHR Turbos are helping MetaAAUs consume less energy and improve performance. Second, algorithm breakthroughs in holographic optics have enabled OXCs to achieve one-hop connections.

Closing out his speech, Guo said, “Huawei will continue its globalization strategy, in standards, talent, supply chain, and more. Huawei is committed to helping customers who choose it to achieve the greatest business success.”



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ADB-funded Thalaiyadi plant serves as blueprint for vulnerable dry zones in Sri Lanka

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Thalaiyadi SWRO desalination plant Photo Credit: ADB

Sri Lanka should adopt a diversified water-security strategy, says chief engineer

By Sanath Nanayakkare

For generations, the Jaffna Peninsula has relied almost entirely on an underground freshwater lens. With no major perennial rivers to lean on, the region has long walked a tightrope between water scarcity, seasonal droughts, and a creeping groundwater salinity that has challenged communities across the North. Today, however, a monumental shift is underway along the windswept Vadamaradchi coast.

To understand how Sri Lanka is rewriting its water security playbook, one need only look to the Thalaiyadi Seawater Reverse Osmosis (SWRO) Plant.

V. Vijayakanth, Chief Engineer of the Jaffna Kilinochchi Water Supply and Sanitation Project (JKWSSP), recently explained the engineering marvels, environmental safeguards, and long-term vision driving this landmark infrastructure project.

“Building a multi-million-gallon desalination plant on an open, deep-sea coastline facing the Indian Ocean was no small feat,” he said.

Vijayakanth noted that the project required extensive marine, geotechnical, and ecological investigations before a single pipe was laid.

“The scale of the marine installation was striking: an intake and outfall system featuring roughly 1,300 metres of large-diameter pipeline, buried two metres beneath the seabed in water depths reaching up to 12 metres. Because ocean work is strictly dictated by nature, the team had to mobilise an excavator-mounted barge from India and execute a complex offshore operation within a very tight window before the onset of the monsoon.”

“One of the greatest historical hurdles of reverse osmosis technology has been its heavy appetite for electricity. To keep operational costs in check, the Thalaiyady plant integrates state-of-the-art isobaric pressure-exchanger energy recovery systems. These devices capture hydraulic energy from the high-pressure brine reject stream and transfer it directly back to the incoming seawater feed – recovering roughly 95% of available energy and slashing power requirements.”

“Environmental stewardship was equally central to the design. To prevent high-salinity discharge from harming the marine ecosystem, the plant utilizes an offshore outfall equipped with specialized diffusers positioned more than 500 metres from the shore. This ensures rapid mixing within a tightly monitored zone, safeguarding local marine life,” he said.

Karaveddi Water Supply Scheme

The impact of the plant is already tangible on the ground. Producing water that meets rigorous national quality standards (SLS 614:2013), the facility feeds into a vast transmission network linked to elevated service reservoirs. These tanks regulate hydraulic pressure across sprawling distribution routes, bringing relief to areas historically plagued by hard, brackish water.

V. Vijayakanth, Chief Engineer of Jaffna Kilinochchi Water Supply and Sanitation Project (JKWSSP)

Currently, about 1,600 households in the Karaveddi Zone are actively connected to the desalinated supply, with water flowing across a regional network stretching from Kodikamam and Jaffna City down to distant island communities like Delft, Kayts and Punguduthivu.

The peninsula’s total daily drinking water demand hovers around 50,000 cubic metres for a population of roughly 600,000. Operating at full capacity, the Thalaiyadi plant yields 24,000 cubic metres per day – meeting nearly half of the region’s current needs.

Yet, planners are already looking decades ahead. Driven by economic development, tourism, and proposed industrial zones like Kankesanthurai, projected potable water requirements for domestic, commercial, and industrial needs are expected to climb from 95,000 cubic metres per day in 2025 to 135,000 by 2045, and 175,000 by 2065. Meeting this future trajectory will require a diversified national strategy combining desalination with surface-water preservation and rainwater harvesting.

When asked whether Sri Lanka should lean exclusively on seawater conversion amid intensifying climate volatility, Vijayakanth emphasised the need for a balanced approach: “Sri Lanka should adopt a diversified water-security strategy, prioritising sustainable surface-water development, groundwater protection, rainwater harvesting, water conservation, treated wastewater reuse and catchment protection. Desalination can complement these sources as a valuable climate-resilient and drought-proof option where appropriate.”

Backed by financial and technical collaboration from the Asian Development Bank (ADB), the project has given the National Water Supply and Drainage Board (NWSDB) invaluable expertise in advanced desalination management. Crucially, a two-year hands-on training program is ensuring that local technical staff master everything from membrane upkeep to preventive maintenance.

As climate variability accelerates, Thalaiyadi serves as a vital proof-of-concept. While energy-intensive desalination cannot replace conventional freshwater sources everywhere, Vijayakanth emphasises that it stands as an indispensable, drought-proof shield for Sri Lanka’s vulnerable dry zones – turning the ocean itself into a secure foundation for the nation’s future.

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Tropic Of Linen takes new form at The Shoppes at City of Dreams

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From left: Tropic Of Linen Founders Minha Akram and Shukran Salih

Sri Lankan fashion label Tropic Of Linen recently opened the doors to its second boutique, located at The Shoppes at City of Dreams.

For over a decade, linen has formed the core of the brand’s inspiration and business ethos. Its textures, movement, and natural irregularities carry through the striking interior of Tropic Of Linen’s newly opened second store. Large sculptural forms in wind-worn sandstone sit against softer curves, while a grand olive tree anchors the heart of the store, reaching up toward a skylight and giving life to the entire space.

Drawing on her background in fine art and design, co-founder Minha Akram envisioned a layered, sensory interior intended to draw people into the world of Tropic Of Linen and invite them to linger.

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ANC Education celebrates ‘Class of 2026’ at graduation ceremony in Colombo

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The ceremony marked both a conclusion and a new beginning, with ANC celebrating student progress and future success

ANC Education held its 2026 graduation ceremony at BMICH, Colombo, celebrating graduates across multiple programmes. The cohort included 53 BBA graduates from Northwood University, 22 Psychological Sciences graduates from Northern Arizona University, 320 Pearson BTEC HND graduates, and 29 BTEC Level 7 graduates, alongside foundation, diploma, and transfer pathway students. Senior representatives from partner institutions attended.

Best Performer Awards recognised outstanding academic achievement. The event honoured years of hard work and support from families and educators. Since 2002, ANC has provided local and international pathways. Graduates now pursue careers, further studies, or international opportunities.

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