China
China targets clean, low-carbon energy system by 2030
By Wang Yunshan, People’s Daily
China recently released a plan for building a new energy system during the 15th Five-Year Plan period (2026-2030). According to the plan, China aims to basically establish a clean, low-carbon, secure and efficient new energy system by 2030.
Wang Hongzhi, head of the National Energy Administration, outlined four key features China’s energy sector will boast after five years of development.
First, it will be more secure and resilient. The country’s total energy production capacity is expected to reach 5.8 billion tons of standard coal equivalent, with steadily improving self-sufficiency and more diversified and controllable energy imports.
Second, it will feature a far-better-balanced energy mix. Renewable energy sources are targeted to exceed 50 percent of the country’s installed power generation capacity, becoming the dominant form. Concurrently, non-fossil energy is projected to generate 50 percent of total electricity, taking the lead as China’s main power source.
Third, the energy system will undergo profound transformation. China will accelerate the construction of robust, resilient, green, low-carbon, integrated, intelligent, and efficient new energy infrastructure. This transformation includes establishing a fundamentally new type of power system.
Fourth, it will become more innovation-driven. The modernization of the industrial chain will advance significantly, and market and pricing mechanisms suited to the new energy system will become more mature.
The plan addresses significant challenges: ongoing geopolitical conflicts disrupting global oil/gas supply chains internationally, and domestically, the rapid integration of wind and solar power creating hurdles for grid stability.
Wang noted that China’s energy demand will continue to grow during the 15th Five-Year Plan period. China will always prepare for worst-case scenarios and apply systems thinking, and always place energy security at the top of its agenda.
To this end, China will focus on three priorities: further developing and expanding reserves of fossil energy resources, substantially increasing the supply of non-fossil energy, and broadening international energy cooperation.
Investment in major energy projects and emerging business models is expected to maintain steady growth during the 15th Five-Year Plan period, with total investment projected to exceed 20 trillion yuan ($2.94 trillion).
According to Wang, these projects fall into three broad categories.
The first category aims to strengthen energy security and mainly includes projects involving oil and gas, coal, supporting power sources, and coal-to-oil and coal-to-gas conversion. Investment in these areas is expected to continue rising steadily.
The second category focuses on advancing the green and low-carbon transition. China will roll out a 10-year action plan to double non-fossil energy output. Investment in the power grid during the 15th Five-Year Plan period is expected to be more than 30 percent higher than during the 14th Five-Year Plan period.
The third category is intended to foster new quality productive forces. China will develop a number of green hydrogen, ammonia and methanol production bases; expand scenarios for direct green power supply to multiple users; and promote new industries and business models such as new energy storage, integrated energy services, virtual power plants, and the coordinated development of computing power and electricity resources.
According to Du Zhongming, director general of the Department of Electricity of the National Energy Administration, fixed-asset investment in China’s power grid is expected to exceed 5 trillion yuan($737.4 billion) during the 15th Five-Year Plan period, with efforts focused on building a new-type power grid around three priorities.
First, upgrade the new architecture of the power grid. During the period, China plans to put into operation 15 new ultra-high-voltage direct-current transmission corridors dedicated to green electricity, increasing west-to-east power transmission capacity to more than 420 million kilowatts.
Second, make breakthroughs in core new technologies. China will accelerate the application of technologies such as grid-forming systems and long-duration energy storage, while implementing an “AI + power grid” initiative.
Third, provide better and more efficient services. Efforts will be made to continue optimizing grid connection and power transmission services for new energy projects and significantly enhance the system’s ability to regulate and balance supply and demand.
During the 15th Five-Year Plan period, China’s annual increase in electricity consumption is expected to reach around 600 billion kilowatt-hours.
“We will act on the guidance of boosting computing power with electricity and driving power industry development via computing demand,” said Wang. “We will coordinate energy resource allocation and computing infrastructure construction to advance the synergy between computing and power systems on multiple fronts.”
China
China’s first fully domestic 100,000-card AI supercluster goes live
By Gu Yekai, People’s Daily
Recently, Dawning 8000, China’s first all-domestic 100,000-card AI supercluster, has been completed and put into operation at the national supercomputing internet core node in Zhengzhou, central China’s Henan province. This marked the beginning of a 100,000-card deployment stage for China’s computing infrastructure development.
In its first week of operation, Dawning 8000 reached full utilization, processing an average of 150,000 computing jobs per day, with a peak daily workload exceeding 500,000 jobs. The system has already completed compatibility testing for a wide range of integrated supercomputing and intelligent computing applications, supporting scenarios including large model training, high-throughput inference, and scientific computing.
Both supercomputing and intelligent computing are essential for processing massive datasets and advancing cutting-edge science and technology.
Supercomputing primarily serves scientific research, tackling major scientific and engineering challenges that require high computational precision, such as weather forecasting, aircraft design, and earthquake simulation.
Intelligent computing, on the other hand, focuses on AI algorithms and model innovation. While it places less emphasis on numerical precision, it prioritizes performance to support applications such as large model training, natural language processing, and autonomous driving.
As large AI models grow larger, computing scenarios become increasingly complex, and AI applications expand rapidly, there is an urgent need for a new generation of computing infrastructure capable of handling high concurrency, high throughput, mixed precision, and multi-task workloads.
Dawning 8000 was developed specifically to meet this demand. As a supercluster, it interconnects tens of thousands of computing cards at ultra-high speed, logically integrating them into a single, centrally scheduled “mega computer,” delivering massive parallel computing power.
“Dawning 8000 adopts a supercomputing-AI fusion architecture, combining high-precision scientific computing with lower-precision intelligent computing on the same platform,” said Li Bin, senior vice president of Chinese tech firm Sugon, which developed the supercluster.
“It supports computing precision ranging from 64-bit double precision down to 32-bit, 16-bit, 8-bit, and even lower, while providing flexible mixed-precision scheduling to meet the needs of scientific research, large model training, AI inference, and industrial simulation.” Li added.
The system is a true engineering marvel. It integrates three billion electronic components, incorporates over 1,600 kilometers of interconnection cables, and weighs approximately 1,500 tons. Yet the entire system had to be assembled with a structural precision of less than 0.05 millimeters—thinner than a sheet of A4 paper.
In terms of system development, Dawning 8000 features a fully self-developed domestic AI infrastructure spanning the entire technology stack, including chips, computing, storage, networking, cooling, applications, and services. Every stage, from the development of core components to full system deployment, has been achieved with domestically developed technologies.
“Scaling up from 10,000 to 100,000 accelerators is far more than simply multiplying the number of devices by 10. The real challenge lies in ensuring that the expanded system delivers the performance and efficiency expected at such a scale, “Li said.
He explained that, in terms of computing coordination, as system architectures evolve toward increasingly complex heterogeneous computing, any bottleneck in either computing or networking nodes can significantly reduce overall performance.
Moreover, the sharp increase in the number of components raises the theoretical failure rate, while the greater complexity of the system architecture makes maintaining stable operation even more challenging.
China’s rapid progress in domestically developed AI chips and the underlying hardware and software ecosystem has provided strong support for the construction of Dawning 8000.
For example, the distributed storage technology used by the system topped both the production full-node and 10-node categories in the IO500 rankings, a global storage performance benchmark, released in June this year.
The storage system is capable of supporting the massive data read-and-write requirements of large model training and scientific computing, ensuring the efficient operation of large-scale computing clusters and demonstrating China’s world-leading capabilities in high-end storage technologies.
In addition, high-speed networking, digital twin-based operations and maintenance, and unified scheduling across heterogeneous computing resources have further enhanced the operational efficiency and application adaptability of ultra-large-scale clusters.
Industry experts believe that establishing a fully domestic technology stack from chips and complete systems to foundational software and intelligent applications, and building a new generation of intelligent computing infrastructure carries profound strategic significance.
Immediately after entering operation, Dawning 8000 was connected to the national supercomputing internet and, through it, integrated into China’s national integrated computing power network.
It now provides computing services to research institutions and industrial users, supporting applications including weather forecasting, materials design, energy exploration, biomedicine, quantum computing, fluid dynamics simulation, industrial simulation, and large model training and inference, while enabling broader nationwide computing resource coordination and application support.
The system has already completed deep adaptation for more than 300 key applications across over 20 industries.
China officially launched the national supercomputing internet in April 2024. It has since become the country’s largest integrated computing network and application service platform, bringing together more than 3.5 million CPU cores and 250,000 GPUs.
The platform now serves more than 1.4 million registered users, with the average user age continuing to decline, making high-end computing resources accessible to everyone from secondary school students to professional researchers.
China
China advances coordinated development of computing power and electricity amid AI boom
By Wang Yunshan, People’s Daily
Artificial intelligence (AI) is rapidly emerging as a defining force in the current wave of technological revolution and industrial transformation. As AI applications expand across industries, computing infrastructure continues to expand — and with it, the demand for electricity.
The International Energy Agency (IEA) projects that global investment in computing infrastructure will continue to grow rapidly. By 2030, electricity consumption by data centers worldwide is expected to nearly double compared to 2025 levels.
Reflecting this trend, this year’s Chinese government work report called for advancing new infrastructure projects, including hyperscale intelligent computing clusters, and promoting the coordinated development of computing capacity and electricity supply.
Why is closer integration between computing power and electricity becoming so important?
The figures tell the story.
In 2025, China’s computing centers consumed 170 billion kWh of electricity, accounting for 1.6 percent of the country’s total electricity consumption. Power demand from computing facilities at the eight national hub nodes of China’s integrated computing network has become a major driver of incremental electricity consumption, with an average annual growth rate of 39.5 percent over the past three years, far outpacing overall electricity demand growth.
“At its core, AI involves highly complex calculations on enormous volumes of data,” explained Tian Lei, director of the energy strategy center at the Energy Research Institute under the National Development and Reform Commission.
“Whether training large AI models or running inference in everyday applications, AI requires continuous large-scale computing, which depends on high-performance, high-power chips. That is the fundamental reason AI consumes so much energy,” Tian added.
Consider a single AI chip. A chip with a power rating of about 700 watts typically consumes more than 10 times the electricity of a conventional central processing unit.
“A cluster equipped with 10,000 such AI chips would require around 7 megawatts of power for the chips alone,” Tian said.
The challenge extends beyond computing hardware itself.
Running these chips continuously at high loads generates enormous amounts of heat. To ensure safe and reliable operation, computing centers require extensive cooling, ventilation, and temperature-control systems.
“Energy-saving technologies have significantly improved cooling efficiency over the years,” Tian noted. “Even so, cooling systems still account for more than 1/5 of a computing center’s total electricity consumption on average.”
Operating around the clock, a 10,000-chip AI cluster — including both the chips and supporting systems — consumes at least 200,000 kWh of electricity every day, Tian told People’s Daily.
The rapid expansion of the AI industry is expected to further drive electricity demand
China’s computing capacity continues to grow at a rapid pace. By the end of March this year, the country’s intelligent computing capacity had reached 1.882 million petaFLOPS, about 2.5 times the level recorded a year earlier. Strong growth is expected to continue.
During the 15th Five-Year Plan period (2026–2030), electricity consumption by China’s computing sector is projected to increase by more than 100 billion kWh annually, reaching 800 billion kWh by 2030, or roughly 6 percent of the country’s total electricity consumption.
AI computing facilities also require exceptionally stable electricity. Even minor fluctuations in voltage or frequency can lead to data transmission errors or equipment failures. Meeting AI’s energy needs therefore requires not only sufficient electricity supply, but also consistently high-quality power.
What advantages does China have in meeting AI’s growing electricity demand?
In terms of supply capacity, China has already built the world’s largest power supply system.
By the end of May this year, the country’s total installed power generation capacity had reached 4.01 billion kilowatts, accounting for nearly 30 percent of the global total, equivalent to about 1.7 times the combined installed capacity of the European Union and the United States.
Wang Hongzhi, head of the National Energy Administration, noted that China’s energy supply has remained stable and orderly throughout this year, demonstrating the resilience of the country’s energy system. This stability, he said, provides confidence that the system can meet the rising electricity demand driven by AI development.
At the same time, China’s power mix is becoming increasingly greener.
By the end of May, non-fossil fuel power generation capacity accounted for 62 percent of the country’s total installed capacity, about 30 percentage points higher than in 2012.
Today, virtually all newly added electricity demand in China is being met by renewable power, reflecting steady progress in the country’s green transition.
Market mechanisms have further accelerated this shift.
In 2025, China’s cumulative green electricity trading volume reached 328.5 billion kWh, while cross-provincial and cross-regional green power transactions continued to expand. The country has also established the world’s largest green electricity certificate market, with 930 million certificates traded last year.
Newly built data centers in locations such as Horinger in north China’s Inner Mongolia autonomous region and Qingyang in northwest China’s Gansu province already source more than 80 percent of their electricity from renewable energy.
Recently, the National Energy Administration, together with other government departments released a series of policy documents, including an action plan for promoting mutual empowerment of AI and energy, which further clarify key priorities for integrating AI with the energy sector.
These policies are designed to strengthen the supply of safe, reliable and green electricity needed for AI development, while also providing stronger institutional support for deeper integration and mutual empowerment between AI and the energy industry.
China
Belt and Road cooperation brings unity, cooperation, shared success to world
By He Yin, People’s Daily
The Advisory Council of the Belt and Road Forum for International Cooperation recently held its 2026 meeting in Urumqi, northwest China’s Xinjiang Uygur autonomous region.
Against a backdrop of global turbulence and change, council members held in-depth discussions on how to advance Belt and Road cooperation more effectively — focusing on capturing new opportunities, addressing emerging challenges, and deepening connectivity.
As uncertainty in the global economy grows, Belt and Road partner countries remain committed to connectivity, common development, and mutually beneficial cooperation. Together, they are channeling positive energy into the world — strengthening unity, collaboration, and shared success — while contributing to greater stability in an increasingly volatile international environment.
In 2013, Chinese President Xi Jinping proposed the Belt and Road Initiative (BRI), offering the world a vision of shared development rooted in Chinese wisdom. In today’s complex and rapidly evolving global landscape, the initiative’s foresight and relevance have only become more apparent.
Council Members spoke highly of the global significance and enduring value of the BRI, noting that it has enhanced the resilience and growth potential of the world economy.
Over the past 13 years, the BRI has evolved from a Chinese proposal into a widely embraced international endeavor and an important global public good. More than 3/4 of the world’s countries have joined the Belt and Road cooperation framework. More than 4,000 cooperation projects have been launched, with cumulative investment exceeding $1 trillion.
Through concrete outcomes, the initiative has helped build a belt of development and a road to happiness to benefit all parties.
Thanks to the joint efforts, Belt and Road cooperation has entered a new stage of high-quality development. Infrastructure connectivity continues to improve, cooperation on rules and standards has deepened, and people-to-people ties among partner countries have grown increasingly close.
Over the past decade, China-Europe freight train services have seen their annual freight train trips skyrocket 10.8-fold, providing strong support for the stability and smooth operation of global supply chains.
During the same period, the Port of Piraeus in Greece, operated by a Chinese company, has been transformed from an aging Mediterranean port into an international shipping hub.
Meanwhile, the China-Laos 500-kilovolt power interconnection project is creating an “electricity highway” that provides new momentum for Laos’ development.
From landmark infrastructure projects to “small yet smart” livelihood programs, roads, bridges, ports, industrial parks, and equipment projects have facilitated the international application of Chinese technologies, standards, and equipment.
More importantly, they have addressed the development priorities of partner countries and the practical needs of local communities, ensuring that the benefits of cooperation take root and improve people’s lives.
As the world faces an ever-growing number of shared challenges, the BRI offers a development-centered approach to tackling global issues. It not only creates new opportunities for participating countries but also contributes Chinese wisdom to global governance.
At a time when unilateralism, protectionism, and bloc confrontation continue undermining the multilateral international order and fragmenting global cooperation, the BRI remains committed to the principle of extensive consultation, joint contribution, and shared benefits. It seeks to promote political trust, economic integration, and people-to-people exchanges, while advancing trade and investment liberalization and facilitation.
In the first half of this year, China’s trade with Belt and Road partner countries reached 12.97 trillion yuan ($1.92 trillion), up 14.8 percent year on year and accounting for 50.9 percent of the country’s total foreign trade. These figures underscore China’s unwavering commitment to opening up and its determination to further expand engagement with the world.
Mari Elka Pangestu, former managing director of development policy and partnerships at the World Bank, observed that China has taken the initiative in building multilateral cooperation platforms and proposing practical solutions, adding that Belt and Road cooperation has become an important platform for sustaining open global trade and technology transfer.
To address global challenges such as climate change, public health crises and imbalances in digital governance, China has actively promoted forward-looking international cooperation under the Belt and Road framework in areas such as green and low-carbon development, the digital economy and artificial intelligence.
Working with partner countries, China is advancing the development of the Green Silk Road, the Health Silk Road, and the Digital Silk Road, creating new opportunities and expanding new frontiers for global development and governance.
Looking ahead, China will remain a reliable partner to all participants in Belt and Road cooperation. Together with all parties, China will continue to promote the steady and sustained progress in Belt and Road international cooperation, ensuring that this broad avenue of mutual benefit, win-win cooperation and shared prosperity continues to expand.
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