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Shanghai's Mega AI Summit Focuses on Hardware and Global Governance

Sara Lindqvist6 min read
Shanghai's Mega AI Summit Focuses on Hardware and Global Governance
Heat, Hardware and Geopolitics: Inside Shanghai’s High-Stakes World AI Conference

The 2026 World Artificial Intelligence Conference (WAIC) in Shanghai has emerged as a showcase not only of cutting-edge algorithms and chips, but also of China’s drive to reshape global AI governance amid intensifying competition with the United States.[3][9][1] From record-breaking exhibition halls to hard-tech breakthroughs unveiled under sweltering summer temperatures, the event highlights how AI hardware, computing power and international rule‑making are becoming central to China’s technological strategy.[3][6][1]

Record-Breaking Scale and a Focus on Computing Power

Held from July 17 to 20, the ninth edition of WAIC spans more than 100,000 square meters of exhibition space across four halls and three venues in Shanghai, the largest footprint in the conference’s history.[3][9] Organizers say more than 1,100 enterprises are exhibiting over 3,000 technologies, with more than 300 AI products making their global debut, underscoring the event’s role as a launchpad for new hardware and software.[3][4][9]

The conference is structured around two core tracks: intelligent computing, which focuses on AI infrastructure and chips, and embodied intelligence, which centers on robots and AI-enabled devices.[3][4][10] Each track has attracted more than 200 companies, marking a shift from pure algorithmic innovation toward large-scale, reliable computing platforms and real-world deployments.[3][4][2]

Domestic Hardware Under the Spotlight

A central theme at WAIC 2026 is the race to build powerful, homegrown computing infrastructure in the face of U.S. export controls on advanced chips.[2][6][10] Industry analysts at the conference describe Chinese domestic chips as crossing an inflection point from merely “usable” to “highly usable,” reflecting rapid progress in performance, scheduling efficiency and ecosystem maturity.[2]

Among the most prominent hardware exhibits is Huawei’s Atlas 950 Super Node, presented as one of the industry’s largest AI computing platforms and a symbol of China’s efforts to reduce reliance on foreign components.[6][7] The system is designed to support massive training workloads for large models, highlighting how computing clusters, rather than individual chips, are becoming the benchmark of national AI capacity.[6]

Other debuts include near‑memory computing 3D chips and new accelerator designs aimed at improving energy efficiency and throughput for AI tasks.[6] These innovations speak to a broader “heat” problem that looms over the sector: as models grow larger and data centers denser, thermal management and power consumption become critical constraints on AI scaling, especially during China’s hot summer months.[2][6] Exhibitors at WAIC showcase cooling solutions and architecture-level optimizations as part of this push to manage the physical limits of AI hardware.[2][6]

Gigantic Models, Agents and the Hardware Behind Them

On the software side, Chinese firms are using WAIC to demonstrate frontier models that depend heavily on domestic computing power. MiniMax’s M3 multimodal large model, revealed as an open-source foundation model, reportedly carries around 2.8 trillion parameters and supports a context window of up to 1,000,000 tokens across text, images, audio and video.[6][7] Such specifications rank it among the largest open-source models in China and underscore the compute‑intensive nature of current AI research.[6]

The conference also spotlights the rapid evolution of AI agents—systems capable of executing tasks and transactions rather than simply conversing. A new “Agent Operating System” called Jieyue is billed as the industry’s first full agent OS, aimed at moving agents from proof‑of‑concept demos to everyday productivity tools.[6][2] In tandem, exhibitors introduce what they describe as the world’s first AI agent smartphone, integrating agent capabilities at the device level and hinting at a future where terminals are rebuilt around AI-native operating systems.[6][2][7]

These software advances reinforce the strategic importance of reliable computing infrastructure. Conference commentary emphasizes that competition is shifting from raw scale—such as total FLOPS or number of GPUs—to end‑to‑end performance, scheduling efficiency and integration with industrial workflows.[2][8] WAIC sessions repeatedly highlight how improvements in hardware utilization and orchestration can rival algorithmic breakthroughs in impact.[2]

Embodied Intelligence: Robots Leave the Lab

The second major track, embodied intelligence, showcases humanoid robots, dexterous hands and other physical systems designed to take AI out of the data center and into factories, homes and public spaces.[3][4][6] Exhibits include multiple humanoid platforms and robotic manipulators intended for logistics, manufacturing and service tasks, reflecting China’s ambition to integrate AI deeply into its industrial base.[6][7][8]

Conference organizers say WAIC has already facilitated 57 major application scenarios, with intended cooperation agreements totaling 16.2 billion yuan (around US$2.2 billion), illustrating the push to convert research prototypes into commercial deployments.[4][6] Those scenarios span sectors from smart manufacturing and autonomous logistics to urban management and healthcare, where embodied intelligence is expected to complement, rather than replace, human workers.[4][8]

Xi Jinping’s Bid to Shape Global AI Governance

Beyond the technical showcases, WAIC 2026 is being used by Beijing as a platform to advance a new global AI governance architecture.[1][4][7] In his address to the opening ceremony, President Xi Jinping urged countries to seize what he called the “historic opportunity” of open‑source AI, warning that unequal access to the technology could create “new historical injustices.”[1] He framed China as a champion of greater AI access for developing nations and argued that rules for AI should not be dominated by a single country.[1][7]

Xi’s speech coincided with the formal launch of the World Organization for Cooperation in Artificial Intelligence (WAICO), an intergovernmental body headquartered in Shanghai.[4][5][6] According to official accounts, 29 founding countries—including Brazil, Russia, Pakistan and Indonesia—plus 10 African and 12 Asian nations signed on to establish WAICO as a mechanism intended to ensure “fair and impartial” global AI governance.[4][6]

China also pledged 5,000 AI training slots for developing countries through WAICO and related initiatives, positioning the new organization as a vehicle for capacity building in the Global South.[6][7] Chinese media and officials describe the move as a “fresh signal” of openness and cooperation, even as it implicitly challenges existing Western-led forums and standard‑setting bodies in the AI domain.[7][1]

Geopolitics, High Stakes and Competing Visions

The geopolitics surrounding WAIC are unmistakable. By coupling massive hardware showcases with a new multilateral governance body, Beijing is signaling that control over AI infrastructure and standards are strategic priorities comparable to those in telecommunications and semiconductor policy.[1][4][6] Xi’s emphasis on open‑source models and accessible computing power is likely to be read in Washington and other capitals as both a genuine bid for broader participation and a challenge to U.S. influence in setting norms.[1]

At the same time, the conference’s commercial figures underscore the economic stakes. Intended cooperation deals totaling 16.2 billion yuan and dozens of large‑scale application projects suggest that WAIC is evolving from a showcase event into a major marketplace and policy stage for China’s AI ambitions.[4][6] For international investors, partners and competitors, the convergence of heat‑intensive data centers, rapidly advancing domestic hardware and newly proposed global institutions makes Shanghai’s World AI Conference a focal point for watching how the next phase of the AI race will be contested.[1][2][6]

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Shanghai's Mega AI Summit Focuses on Hardware and Global Governance
Autos

Shanghai's Mega AI Summit Focuses on Hardware and Global Governance

Heat, Hardware and Geopolitics: Inside Shanghai’s High-Stakes World AI Conference The 2026 World Artificial Intelligence Conference (WAIC) in Shanghai has emerged as a showcase not only of cutting-edge algorithms and chips, but also of China’s drive to reshape global AI governance amid intensifying competition with the United States. From record-breaking exhibition halls to hard-tech breakthroughs unveiled under sweltering summer temperatures, the event highlights how AI hardware, computing power and international rule‑making are becoming central to China’s technological strategy. Record-Breaking Scale and a Focus on Computing Power Held from July 17 to 20, the ninth edition of WAIC spans more than 100,000 square meters of exhibition space across four halls and three venues in Shanghai, the largest footprint in the conference’s history. Organizers say more than 1,100 enterprises are exhibiting over 3,000 technologies, with more than 300 AI products making their global debut, underscoring the event’s role as a launchpad for new hardware and software. The conference is structured around two core tracks: intelligent computing , which focuses on AI infrastructure and chips, and embodied intelligence , which centers on robots and AI-enabled devices. Each track has attracted more than 200 companies, marking a shift from pure algorithmic innovation toward large-scale, reliable computing platforms and real-world deployments. Domestic Hardware Under the Spotlight A central theme at WAIC 2026 is the race to build powerful, homegrown computing infrastructure in the face of U.S. export controls on advanced chips. Industry analysts at the conference describe Chinese domestic chips as crossing an inflection point from merely “usable” to “highly usable,” reflecting rapid progress in performance, scheduling efficiency and ecosystem maturity. Among the most prominent hardware exhibits is Huawei’s Atlas 950 Super Node , presented as one of the industry’s largest AI computing platforms and a symbol of China’s efforts to reduce reliance on foreign components. The system is designed to support massive training workloads for large models, highlighting how computing clusters, rather than individual chips, are becoming the benchmark of national AI capacity. Other debuts include near‑memory computing 3D chips and new accelerator designs aimed at improving energy efficiency and throughput for AI tasks. These innovations speak to a broader “heat” problem that looms over the sector: as models grow larger and data centers denser, thermal management and power consumption become critical constraints on AI scaling, especially during China’s hot summer months. Exhibitors at WAIC showcase cooling solutions and architecture-level optimizations as part of this push to manage the physical limits of AI hardware. Gigantic Models, Agents and the Hardware Behind Them On the software side, Chinese firms are using WAIC to demonstrate frontier models that depend heavily on domestic computing power. MiniMax’s M3 multimodal large model , revealed as an open-source foundation model, reportedly carries around 2.8 trillion parameters and supports a context window of up to 1,000,000 tokens across text, images, audio and video. Such specifications rank it among the largest open-source models in China and underscore the compute‑intensive nature of current AI research. The conference also spotlights the rapid evolution of AI agents —systems capable of executing tasks and transactions rather than simply conversing. A new “Agent Operating System” called Jieyue is billed as the industry’s first full agent OS, aimed at moving agents from proof‑of‑concept demos to everyday productivity tools. In tandem, exhibitors introduce what they describe as the world’s first AI agent smartphone, integrating agent capabilities at the device level and hinting at a future where terminals are rebuilt around AI-native operating systems. These software advances reinforce the strategic importance of reliable computing infrastructure. Conference commentary emphasizes that competition is shifting from raw scale—such as total FLOPS or number of GPUs—to end‑to‑end performance, scheduling efficiency and integration with industrial workflows. WAIC sessions repeatedly highlight how improvements in hardware utilization and orchestration can rival algorithmic breakthroughs in impact. Embodied Intelligence: Robots Leave the Lab The second major track, embodied intelligence, showcases humanoid robots, dexterous hands and other physical systems designed to take AI out of the data center and into factories, homes and public spaces. Exhibits include multiple humanoid platforms and robotic manipulators intended for logistics, manufacturing and service tasks, reflecting China’s ambition to integrate AI deeply into its industrial base. Conference organizers say WAIC has already facilitated 57 major application scenarios, with intended cooperation agreements totaling 16.2 billion yuan (around US$2.2 billion), illustrating the push to convert research prototypes into commercial deployments. Those scenarios span sectors from smart manufacturing and autonomous logistics to urban management and healthcare, where embodied intelligence is expected to complement, rather than replace, human workers. Xi Jinping’s Bid to Shape Global AI Governance Beyond the technical showcases, WAIC 2026 is being used by Beijing as a platform to advance a new global AI governance architecture. In his address to the opening ceremony, President Xi Jinping urged countries to seize what he called the “historic opportunity” of open‑source AI, warning that unequal access to the technology could create “new historical injustices.” He framed China as a champion of greater AI access for developing nations and argued that rules for AI should not be dominated by a single country. Xi’s speech coincided with the formal launch of the World Organization for Cooperation in Artificial Intelligence (WAICO) , an intergovernmental body headquartered in Shanghai. According to official accounts, 29 founding countries—including Brazil, Russia, Pakistan and Indonesia—plus 10 African and 12 Asian nations signed on to establish WAICO as a mechanism intended to ensure “fair and impartial” global AI governance. China also pledged 5,000 AI training slots for developing countries through WAICO and related initiatives, positioning the new organization as a vehicle for capacity building in the Global South. Chinese media and officials describe the move as a “fresh signal” of openness and cooperation, even as it implicitly challenges existing Western-led forums and standard‑setting bodies in the AI domain. Geopolitics, High Stakes and Competing Visions The geopolitics surrounding WAIC are unmistakable. By coupling massive hardware showcases with a new multilateral governance body, Beijing is signaling that control over AI infrastructure and standards are strategic priorities comparable to those in telecommunications and semiconductor policy. Xi’s emphasis on open‑source models and accessible computing power is likely to be read in Washington and other capitals as both a genuine bid for broader participation and a challenge to U.S. influence in setting norms. At the same time, the conference’s commercial figures underscore the economic stakes. Intended cooperation deals totaling 16.2 billion yuan and dozens of large‑scale application projects suggest that WAIC is evolving from a showcase event into a major marketplace and policy stage for China’s AI ambitions. For international investors, partners and competitors, the convergence of heat‑intensive data centers, rapidly advancing domestic hardware and newly proposed global institutions makes Shanghai’s World AI Conference a focal point for watching how the next phase of the AI race will be contested.

Sara Lindqvist·
UNESCO and LG AI Research Launch Free Global Course on Responsible AI
Autos

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UNESCO and LG AI Research have launched a free global online course designed to turn AI ethics principles into practical skills for professionals working with artificial intelligence. The Massive Open Online Course, or MOOC, was unveiled in Seoul during the Ethics by Design: Industry and Innovation Conference and is being delivered in partnership with Coursera. The new course arrives as governments, companies and universities face growing pressure to make AI systems more transparent, fair and accountable. UNESCO said the initiative is intended to translate its long-standing ethics framework into a learning experience that helps people apply those ideas in everyday development, deployment and governance decisions. 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What the course covers The program is structured across 10 modules and covers topics including fairness and inclusion, privacy and data governance, transparency and accountability, safety and security, environmental sustainability and global AI governance. UNESCO said the course emphasizes practical application, including everyday trade-offs that influence ethical AI decisions, and uses real-world cases, adaptable frameworks and reflective exercises. Coursera describes the MOOC as a practical foundation for people with basic AI knowledge who want to understand how ethics can be embedded in AI products and services. The platform says the course is available to learners worldwide and includes certification upon completion. A partnership aimed at broad access UNESCO said the course was co-developed with LG AI Research , whose involvement helped shape a curriculum meant to be rigorous and forward-looking. Coursera joined as a delivery partner, opening the course to a global audience through its online learning platform. The launch also reflects a broader push to democratize AI ethics education. UNESCO described the MOOC as a global public good, designed to be accessible across borders and generations. In parallel, UNESCO had earlier announced plans for a global repository of best practices to showcase how ethics in AI is being applied around the world, alongside the course development process. Why the timing matters The launch comes amid intensifying debate over how AI should be governed as the technology spreads through workplaces, public services and consumer products. UNESCO has repeatedly framed its ethics recommendation as a foundation for international cooperation on AI governance, and the new course appears intended to make those ideas more usable for practitioners. At the Seoul conference, the discussion was centered on what ethical AI looks like in practice, from how systems are built to who they are built for. The event brought together participants from UNESCO, LG AI Research, the Korea AI Safety Institute, Coursera and companies including Kakao and NAVER, alongside academic and research institutions. Part of a wider effort in Korea and beyond Reporting from The Korea Herald said LG AI Research launched the course in partnership with the Korean National Commission for UNESCO, and that the initiative builds on a collaboration formed after the AI Seoul Summit in 2024. The outlet also reported that the curriculum involved AI ethics experts from institutions such as Carnegie Mellon University, Stanford University, the Oxford Internet Institute and the Alan Turing Institute. That coverage added that the partners plan to launch a pilot AI ethics training program for developers and researchers later this year, with an eventual expansion to five to 10 regional universities across Korea in 2027. Those plans suggest the MOOC may serve not only as a standalone course but as the basis for broader training efforts in the region. For UNESCO, the project fits a larger strategy of turning its recommendation into tools that institutions can actually use. The organization has argued that ethical AI standards only gain value when they move from policy language into technology development, research, industry practice and policymaking. This course is meant to help do exactly that, by giving learners a shared framework for decisions that are increasingly shaping how AI affects public life. With free access, certification and a curriculum aimed at practical decision-making, the UNESCO-LG AI Research MOOC is positioned as both an educational offering and a policy instrument. Its success will likely depend on whether developers, regulators and institutions adopt it as a common reference point for responsible AI work.

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Mercedes CLA L for China: Poor Sales Lead to Production Halt
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This configuration is traditionally in demand in the PRC, where many manufacturers offer "long" versions of sedans and crossovers for more space for rear-seat passengers. The model is equipped with a battery capacity of about 89 kWh and boasts a range of up to 866 km in the Chinese CLTC cycle, formally making it one of the "longest-range" cars in its segment. The CLA L also received a software suite adapted for the local market, including advanced artificial intelligence functions and fast charging, designed to compete with local tech brands. The production of the sedan was carried out at the facilities of the joint venture Beijing Benz Automotive —a joint venture between Mercedes‑Benz and China's BAIC Motor, responsible for the production of a number of premium models for the domestic market of the PRC. Sales Statistics: A Sharp Spike and a Crash to Zero The main reason for the conveyor belt stoppage was the extremely low sales volumes in the world's largest electric vehicle market. According to MBPassion, cited by Carscoops and a number of European media outlets, dealers managed to deliver only 627 CLA L cars in the first half of 2026. The monthly dynamics are as follows: January — 35 cars; February — 21 cars, a minimum for the period; March — a short-term spike to 358 units; April — a drop to 52; May — 161 cars; June — according to some sources, 0 new registrations . It was the data on zero June sales that led to loud headlines about the model's "failure" and a "symbol of the crisis" in Mercedes' electric car sales in China. At the same time, some Chinese statistical reports still record minor registrations, indicating possible discrepancies in accounting methodology and continuing uncertainty. Temporary Pause: What is Known About the Production Stop A number of European and Asian publications, including MBPassion and Highmotor, report a temporary suspension of CLA L assembly at the Beijing Benz plant in Beijing. It is noted that at such a level of demand, mass production loses its economic sense, and further production risks an oversupply of inventory. Mercedes‑Benz has not publicly confirmed either the fact of the production stoppage or the possible timing of its resumption, leaving the question of the model's future open. According to MBPassion, a complete withdrawal of the CLA L from the market is not ruled out if the demand assessment proves to be consistently erroneous and the situation cannot be reversed. Thus, the current status of the project can be described as "frozen": formally, the model remains in the lineup, but its production, according to specialized sources, has been paused due to sales not meeting initial forecasts. Why the "Chinese" CLA Didn't Become a Hit Analysts attribute the weak interest in the CLA L not to its technical characteristics, but to the general change in the competitive environment in the PRC electric vehicle market . German publications note that it is becoming increasingly difficult for Mercedes‑Benz to compete with local brands such as Xiaomi, Nio, BYD, XPeng, and others, which offer aggressive pricing, deep integration of digital services, and rapidly updated model lineups. Against the backdrop of local manufacturers focused on online sales and ecosystems of "smart homes" and mobile services, even the premium status of the Mercedes brand no longer guarantees success in the mid-price segment of electric sedans. At the same time, the CLA L is positioned as technologically advanced, but at the initial sales launch, prices comparable to some mass-market models were reported, which should have made it competitive in terms of "image/cost" ratio. A separate problem is the possible mismatch between the product and the expectations of the Chinese audience: the extended wheelbase and spacious rear row have become market standards, and the key factor in choice is increasingly the design of interfaces, the quality of built-in services, local super-apps, and "smart" functions, in which new Chinese brands are moving faster than traditional automotive concerns. Implications for Mercedes‑Benz's Strategy in China The unsuccessful launch of the CLA L is seen as an indicator of a broader problem: the transition of power in the PRC electric vehicle market to local players , even in segments historically dominated by European premium brands. For Mercedes‑Benz, this is a signal of the need to revise its product and pricing strategy, as well as to adapt the digital part of the car to local user habits. At the same time, the failure of one model does not mean the concern's withdrawal from the Chinese market. The company continues to develop production through joint ventures, expand its electric lineup, and test different formats of cooperation with local IT players. However, the CLA L case, created "for China" and proving to be in demand, has already become an illustrative example of the risks when attempting to finely adapt a global platform to a hyper-dynamic market.

Sara Lindqvist·