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China’s first humanoid robot 7S store in Hubei province generating buzz

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By Wu Jun, People’s Daily

In China, car dealerships are commonly known as 4S stores, a model that integrates sales, spare parts, service, and surveys under one roof. Now, a groundbreaking concept is emerging: a robot 7S store in Wuhan, capital city of central China’s Hubei province.

This pioneering store expands beyond the traditional 4S functions to include solutions, showcase and skills training. This model covers nearly the entire humanoid robot value chain, from key components and complete units to real-world application scenarios.

Inside the store, humanoid robots of different sizes and forms are busy at work: some kick footballs, some assist with sales, others play music. 

“We currently have 17 models of humanoid robots on display, priced from 7,999 yuan ($1152.89) to 700,000 yuan,” said store manager Hu Longdan. “They can be used in more than 10 scenarios, including industrial manufacturing, tourism guiding, elderly care and rehabilitation, and special operations.”

At the entrance of the store, a humanoid robot with wheels beneath its feet greets visitors. Named Yuanyou (meaning “traveling far”), the robot stands 158 centimeters tall, weighs 72 kilograms, and can move at a speed of 1.5 meters per second. 

“Yuanyou is a homegrown ‘Hubei native,'” Hu explained. For the past nine months, it has been working at Xianning Central Hospital in Hubei province, providing services such as patient guidance, explanations, and moxibustion therapy. It is the first humanoid robot in Hubei to work in a hospital.

“Before developing Yuanyou, we conducted extensive research into user needs,” said Yuan Chao, general manager of HandX, the developer of the robot. “We designed different ‘organs’ and ’tissues’ — hardware, software, and algorithms — and then assembled them into a complete humanoid robot.” 

He noted that a team led by Academician Liu Sheng from Wuhan University’s School of Microelectronics provided solutions in sensors and AI, while Hubei’s local humanoid robot enterprises supplied more than 80 percent of the hardware components. 

“Hubei has 20 core companies engaged in humanoid robot components and nearly 1,000 related enterprises,” Yuan said. “Key components such as the ‘brain,’ ‘skeleton,’ and ‘electronic skin’ can all be sourced locally.”

The journey from research and development to production was remarkably swift, taking only six months. In April 2025, the first Yuanyou robot rolled off the production line, and the product has now entered mass production. According to Yuan, the company has built four automated humanoid robot production lines with an annual capacity of 1,500 units.

Manufacturing robots is just the beginning; effectively deploying them is equally critical. To address this, Hubei established the Hubei Humanoid Robotics Innovation Center in June 2025 — effectively a “school” for humanoid robots. Every newly manufactured robot can undergo systematic training there under the guidance of data collection specialists.

“We offer 23 simulation scenarios and more than 10 temporary ones, allowing over 100 humanoid robots to train simultaneously,” said Liu Chuanhou, chief operating officer of the center. “We can collect over 1 million real-machine data entries each year. After verification, labeling, and cleaning, the data are fed into large-model training, enabling the robots to continuously evolve.”

So far, the 7S store has achieved revenue exceeding 600,000 yuan from various businesses including experiential consumption, sales, tours, and robot rentals. Hu noted that the store is backed by Hubei’s increasingly robust industrial ecosystem for humanoid robots. 

“The current capabilities of humanoid robots are still limited,” Hu acknowledged, “but they are poised to enter households and serve diverse industries in the near future, becoming integral to daily life.”

As one of the world’s most dynamic innovation hubs in the humanoid robot sector, China has in recent years seen rapid improvements in overall robot performance and expanding application scenarios, ranging from automobile manufacturing and computer, communication and consumer electronics assembly to warehousing, logistics, and smart elderly care.

Li Miao, a professor at the School of Robotics at Wuhan University, noted that the industry’s surge is the result of multiple forces converging. 

“Large AI models provide robots with a ‘brain,’ open-source operating systems lower development barriers, and the costs of key hardware such as motors, sensors, and reducers continue to fall, making high-performance humanoid robots feasible,” he said. 

Meanwhile, the digital and intelligent transformation across manufacturing and service sectors has generated substantial market demand, while robust national strategies and policy support are accelerating the influx of capital and talent. “Over the next five years,” Li added, “China’s humanoid robot industry is poised to transition from a phase of intense attention to one of tangible maturity.”

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Shanghai pioneers AI-driven scientific research paradigm

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By Jiang Hongbing, People’s Daily

In June 2023, Fudan University launched its campus-based cloud intelligent computing platform. 

Building on this initiative, Professor Qi Yuan and colleagues proposed to Shanghai’s municipal leadership that China develop large-scale scientific AI models, drawing inspiration from leading global projects. 

Their proposal received approval within a week. By September of that year, the Shanghai Academy of AI for Science (SAIS) was officially established.

More than two years later, the institute has become a benchmark for “new research infrastructure,” with a steady stream of breakthroughs.

On March 1, 2026, SAIS unveiled super scientific research partner Dasheng, an intelligent agent capable of autonomously breaking down research tasks and advancing projects based on natural language instructions.

Dasheng is highly versatile. It supports research across life sciences, earth sciences, humanities and other fields. Powered by strong foundational model tools, it can even generate multiple parallel “instances” to handle complex and time-intensive tasks simultaneously.

Dasheng is developed under the NovaInspire platform jointly built by SAIS, Fudan University, and Shanghai-based AI company INF. The platform made its debut at the World Artificial Intelligence Conference 2025, where it introduced the concepts of “scientist-centered design” and “accelerating scientific discovery.” 

Through continuous iteration, the platform has integrated over 400 scientific models and tools, accumulated 22 petabytes of high-value data, and incorporated more than 500 million academic papers and patents, generating a growing number of innovations.

At SAIS, several domain-specific scientific models — named after figures from Chinese mythology — are designed to address key scientific challenges in high-value industrial applications.

In materials science, the Suiren model has built a candidate library of 12,000 molecules to train generative models, accelerating the discovery of new electrolyte formulations for lithium batteries.

In drug design, the Nvwa RNA model, combined with a proprietary siRNA database, has overcome key bottlenecks in siRNA drug development. Its goal is to evolve into a “living” scientific AI infrastructure, one that can be repeatedly used and continuously improved by scientists and industry experts.

In earth sciences, alongside the FuXi weather model, SAIS has also developed PI@Climate, a large language model trained on data spanning more than ten primary disciplines. As China’s self-developed climate science model, it is already providing intelligent support for climate research, international climate negotiations, and policy-making.

According to Wu Libo, assistant president of Fudan University and chair of SAIS, the institute’s exploration is helping universities systematically validate a new paradigm for future scientific research. SAIS has already established in-depth collaboration with 43 teams at Fudan University, supporting the creation of 18 interdisciplinary centers for scientific intelligence. 

“We aim to break down the boundaries between disciplines, engineering, platforms, and talent development,” Wu said.

SAIS fosters innovation through initiatives like its “research bar,” where young researchers can receive a free drink in exchange for sharing their ideas and innovations — an initiative that reflects a vibrant and youth-driven culture.

The institute’s multidisciplinary team averages 33 years in age, About 31 percent recruited from overseas universities and leading AI labs, while 40 percent bring extensive engineering experience from top tech companies. “Our greatest strength lies in these young talents,” Wu noted.

What attracts such a dynamic group of innovators?

Sun Xiuyu, an AI scientist in earth sciences, pointed out that under an organized research framework, SAIS provides participating teams with high-quality computing resources and considerable research autonomy, enabling young researchers to turn ideas into reality through continuous experimentation.

Wang Wenli, a materials science researcher, values the institute’s collaborative environment, where scientists, AI experts, and engineers interact face-to-face on a regular basis. “What we create here naturally integrates the genetic strengths of multiple disciplines,” she said.

Jiang Ruoxi, an AI scientist at SAIS, added, “What initially attracted me was the close integration with industry, but the speed of progress has exceed all expectations.”

“Our goal is to build a world-class scientific intelligence institution by 2030,” said Qi Yuan, president of SAIS, expressing strong confidence in the institute’s future.

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Why Chinese transformers are in high demand globally

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By Ding Yiting, People’s Daily

Transformers, seemingly unremarkable devices, have recently become highly sought-after products worldwide. 

According to China’s General Administration of Customs, China’s transformer exports exceeded 64.6 billion yuan ($9.29 billion) in 2025, up nearly 36 percent year on year. The average export price per unit reached about 205,000 yuan, roughly 1/3 higher than the previous year. 

Many transformer manufacturers already have full order books, with some orders for data-center applications scheduled to run through 2027.

What drives this strong global demand for Chinese transformers? The most immediate factor is surging international need. 

Developed economies such as Europe and the United States are upgrading aging power grids. Meanwhile, emerging markets face rising electricity consumption and increasing shares of clean energy, accelerating investment in grid infrastructure. Concurrently, the rapid expansion of overseas computing infrastructure, including data centers, further fuels demand. These converging trends propel the growth of China’s transformer exports.

With numerous companies worldwide competing in this expanding market, why has China emerged as the world’s top transformer producer? Three key words hold the answer. Together, they explain not only why Chinese transformers are selling well, but also the deeper logic behind the global competitiveness of Chinese manufacturing sector.

First, “speed” — made possible by a highly integrated industrial chain.

The competitiveness of a product depends not only on the product itself but also on the industrial ecosystem behind it. China has established the world’s most comprehensive transformer manufacturing system, encompassing everything from raw materials like copper and aluminum to critical components such as transformer cores and on-load tap changers. This system accounts for roughly 60% of global production capacity. 

Close coordination between upstream and downstream industries, together with a highly controllable supply chain, allows Chinese companies to respond rapidly to changes in demand. Their delivery times are often far shorter than those of European and American manufacturers, whose lead times typically range from 18 months to two years.

The advantages of a complete industrial system extend beyond transformers. In robotics, for example, China has steadily developed a comprehensive supporting ecosystem, from high-precision reducers and high-performance servo systems to intelligent controllers. In the Yangtze River Delta, some robots now use 100 percent domestic core components, reducing costs by about 40 percent. In 2025, China’s exports of industrial robots exceeded imports for the first time.

Industrial competition cannot rely on isolated efforts. By leveraging its industrial scale and well-established supporting industries, China has built secure and efficient industrial and supply chains, enabling its enterprises to thrive in the global market and securing the strong foundation of Chinese manufacturing.

Second, “adaptability” — the ability to accurately identify and respond to market demand.

Innovation is reflected not only in technological upgrades but also in products that dynamically adapt to market needs. To satisfy environmental standards in European and American markets, Chinese companies have developed vegetable-oil transformers. For data center applications, they have designed solid-state transformers that occupy less space while offering higher efficiency. By focusing on market requirements and addressing specific customer needs through specialized and customized production, China’s transformer industry has grown rapidly.

Some foreign businesspeople remark that Chinese entrepreneurs have an exceptionally sharp eye for market opportunities: wherever demand appears, Chinese suppliers are often among the first to respond. 

In the small appliance sector, multifunctional heaters, capable of warming a room on all sides while heating tea on top, have become popular in Japan and South Korea. In heavy machinery, cranes equipped with desert tires and special fire-extinguishing systems have gained popularity in Middle Eastern markets. These examples illustrate a simple principle: following the market and responding to demand can open wider global opportunities for Chinese manufacturers.

Third, “reliability” — supported by the vast and diverse application scenarios of Chinese market.

Application scenarios are valuable and often scarce resources for innovation. China’s domestic projects, from power grid upgrades to the construction of computing infrastructure, have provided transformer companies with real-world testing grounds to overcome technological challenges. Over the past five years, the State Grid Corporation of China has completed and put into operation multiple ultra-high-voltage (UHV) transmission projects, helping the country secure technological leadership in UHV transmission and intelligent transformers.

Diverse domestic scenarios, ranging from urban governance to logistics networks, are spurring the rapid development of low-altitude economy. Challenging environments such as high-altitude regions, deserts and Gobi areas, and low-wind-speed zones have pushed wind power companies to develop customized technological solutions. 

China’s enormous market size and rich application scenarios allow products to be tested extensively at home before entering international markets, ensuring both reliability and practicality.

Amid the uncertainties of a rapid changing external environment, it is precisely these strengths —  solid industrial foundations, strong innovation momentum and scenario-based advantages — that give Chinese companies the confidence to compete on the global stage. 

They also highlight an important lesson: regardless of shifting market trends, companies that strengthen their capabilities, sharpen their competitiveness and continuously drive industrial upgrading will be well positioned to succeed in the long run.

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‘Open-source’ nature of Chinese modernization and its global significance

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By Zheng Yongnian

During this year’s “two sessions,” the annual meetings of China’s top legislature, the National People’s Congress, and top political advisory body, the Chinese People’s Political Consultative Conference National Committee, Chinese lawmakers approved the outline of the 15th Five-Year Plan (2026-2030) for national economic and social development. This plan provides a clear blueprint for China’s modernization path over the next five years, attracting significant global attention.

The world is closely watching how China, deeply integrated into the global economy, will continue contributing to international growth. The increasing global significance of China’s development stems fundamentally from the “open-source” character of its modernization approach.

Chinese modernization uniquely blends distinct national characteristics with the universal goals of modernization. This synthesis is made possible by China’s pursuit of progress through high levels of openness, justifying the application of the “open-source” concept. In technology, “open-source” denotes an open, collaborative model where designs are publicly accessible for modification, improvement, and sharing. More broadly, it represents a philosophy centered on free information exchange, rapid experimentation, and cooperative innovation.

Chinese modernization places China as the primary subject, emphasizing that modernization is pursued by China, not imposed upon it. Intellectually, China treats modernization as a practical endeavor, not a rigid ideology. Practically, it maintains an open attitude, drawing on the outstanding achievements of human civilization while firmly retaining its distinct subjectivity and autonomy. It adapts and integrates these insights in light of its own civilization, culture, and national conditions.

The “open-source” nature of Chinese modernization rests on three pillars. First, Chinese path to modernization possesses its own fundamental principles and origins. Second, China advances its modernization with an open mindset and practice, promoting mutual progress with the modernization processes of other countries and regions. Third, when others learn from China they primarily adopt an approach emphasizing autonomy, self-reliance, and pragmatic adaptation.

According to the report to the 20th National Congress of the Communist Party of China, Chinese modernization is the modernization of a huge population, of common prosperity for all, of material and cultural-ethical advancement, of harmony between humanity and nature and of peaceful development. This represents one of the most comprehensive and rigorous definition of modernization to date.

Modernization of a huge population carries at least three key implications: people are the central actors of modernization; China’s enormous population makes its modernization far more challenging than in Western countries; and Chinese modernization represents a highly organized form of collective modernization.

Modernization of common prosperity for all corrects the “prosperous but unequal” model found in some Western countries. Modernization of material and cultural-ethical advancement addresses the imbalance often seen in Western modernization, prioritizing both material and spiritual progress. Modernization of harmony between humanity and nature avoids the old path followed by some Western countries of “polluting first and cleaning up later.” Modernization of peaceful development steers clear of the colonial and imperialist patterns that marked early Western modernization.

These five defining features encompass three dimensions of modernization: material, institutional, human. At its core, modernization is about human development. Institutional modernization is crucial, serving as a bridge linking material progress and human development. Institutions ensure that material and human modernization progress in a coordinated manner.

Chinese modernization is a rational choice grounded in China’s own development experience, seeking a dynamic balance among material progress, institutions development, and human advancement.

Adhering to opening up, cooperation and mutual benefit is an inherent requirement of Chinese modernization. Openness is the prerequisite for “open source.” It is precisely through opening up that China has effectively leveraged its comparative advantages, generating strong momentum for modernization.

Chinese modernization has advanced alongside the reform and opening up. Domestic reform and international opening reinforce each other, forming a model of “open-source modernization”: openness promotes reform, while innovation translates reform into practice.

China’s opening up has entered a new phase of greater depth, characterized by two distinct features: high-standard institutional opening up and unilateral opening up. Institutional opening up focuses on aligning domestic rules, regulations, management standards, and norms with international practices. Unilateral opening up represents an autonomous choice made by China that does not require reciprocal commitments from other parties.

Unlike some Western countries that have historically rescinded access to development resources after achieving success (“kicking away the ladder”), China, while achieving its own development, is willing to “offer a ladder” to help others progress. More importantly, China is helping improve global governance through its “open-source” modernization.

China has proposed the Belt and Road Initiative as well as the Global Development Initiative, the Global Security Initiative and the Global Civilization Initiative. It firmly supports the international system with the United Nations at its core and actively participates in global economic, security and development governance. 

China is also working to enable multilateral platforms such as the G20, APEC, and the BRICS, helping countries, especially those in the Global South, improve infrastructure, enhance industrial capacity, improve livelihoods and strengthen development resilience.

The “source” provided by Chinese modernization offers inspiration for more countries seeking independent development paths. The “open-source” nature of Chinese modernization not only supports China’s own sustainable development but also creates new opportunities for other countries and contributes to a better future for humanity.

(Zheng Yongnian is the dean of the School of Public Policy at The Chinese University of Hong Kong, Shenzhen, and director of the Institute for International Affairs, Qianhai.)

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