China
Turpan turns extreme heat into thriving testing industry
By Shang Rongzheng, People’s Daily
If one word could sum up Turpan, a city in northwest China’s Xinjiang Uygur autonomous region, that word would be “hot.”
The city experiences temperatures above 35 degrees Celsius on more than 100 days each year. This July alone, daily temperatures exceeded 40 degrees Celsius on 20 days, while ground temperatures often climbed above 70 degrees Celsius.
The climate is not only scorching but also exceptionally dry.
Strong winds are common, and annual precipitation averages just 14.7 millimeters. However, annual evaporation reaches 2,477.5 millimeters.
Yet these once unforgiving natural conditions have become a driving force for industrial growth.
Every year from June to September, over 10,000 items made of plastic, rubber, metal, and other materials, alongside more than 1,000 new energy vehicles (NEVs), endure rigorous high-temperature trials in Turpan. This has given rise to a dry-heat testing industry with an annual output value exceeding 100 million yuan ($14.77 million).
Under the blazing summer sun, Zeng Wenbo, a test engineer at an NEV testing center operated by an automobile testing company under China Communications Construction Company Limited (CCCC), parked an electric vehicle on the open test ground. There, it began a 10-day outdoor exposure test.
“Before entering the market, NEVs generally undergo tests in high-temperature, extreme-cold and high-altitude environments,” Zeng said. “Turpan’s unique natural conditions make it one of the best locations for high-temperature, dry-heat testing.”
A closer look at the vehicle revealed dozens of sensors attached to the dashboard, steering wheel, seats, door handles, and body panels. Each sensor is connected by wires to a monitoring terminal.
It’s like giving the vehicle dozens of thermometers, Zeng explained, adding that the sensors continuously monitor temperatures at all critical parts.
“The outdoor exposure test is conducted during the hottest hours of the day and lasts at least three hours per session,” Zeng told People’s Daily.
“The data collected helps manufacturers improve the heat resistance of vehicle components and develop better anti-burn protection measures,” he said.
After 10 days of exposure, the vehicle moves on to road testing, where engineers evaluate battery safety, vehicle power performance, cooling system durability, air conditioning performance, driving comfort, and the reliability of electronic systems and seals.
According to Yu Shengli, executive deputy general manager of the automobile testing company, the facility is China’s first third-party automotive testing ground specializing in high-temperature, dry-heat conditions.
“Compared with testing facilities built by individual automakers, we can provide a much broader range of testing services while helping manufacturers reduce costs,” Yu said.
The testing center has attracted more than 70 vehicle brands from over 50 automakers, with approximately 1,500 vehicles tested each year.
Today, Turpan is home to five high-temperature, dry-heat testing bases, which together conduct more than 90 percent of China’s automotive high-temperature testing.
The city’s testing capabilities now extend well beyond automobiles.
In 2025, the CCCC automobile testing company received approval to establish a dedicated low-altitude flight testing zone. The designated airspace covers a radius of 5 kilometers around the testing ground and extends up to 600 meters in altitude, allowing comprehensive testing of low-altitude aircraft.
Testing focuses on battery safety, flight control systems, electric propulsion performance, structural integrity, and sealing reliability.
With the buzz of spinning propellers, test engineer Luo Hao launched a drone designed for inspections of power grids, photovoltaic facilities, and highways.
This time, Luo brought two identical drones to Turpan. One would remain outdoors for three months for static testing, while the other was used for dynamic flight tests.
During static testing, engineers inspect structural components twice daily — once in the morning and once in the evening. They monitored not only the impact of high temperature and dry heat on these parts, but also whether drastic diurnal temperature variations could trigger thermal expansion and contraction.
“Dynamic testing simulates normal operations under extreme conditions, mainly involving fully loaded inspection flights,” Luo explained.
Extreme temperatures can affect motor cooling and the stability of flight-control chips, potentially causing battery temperature to rise and power output to decline during prolonged hovering.
Since the low-altitude testing zone was approved, more than 20 low-altitude aircraft have completed testing there.
Another major testing facility, the Xinjiang Turpan Natural Environment Test and Research Center, sits beneath the Flaming Mountains, or Huoyan Mountain, Turpan’s iconic red sandstone range famed as China’s hottest terrain.
At this facility, rows of prefabricated test chambers house air conditioners from different manufacturers and models, all undergoing high-temperature, dry-heat performance testing.
“Extreme heat has a significant impact on air conditioning performance,” said Xu Ce, a test engineer with a testing company. “Our primary task is to verify whether air conditioners can achieve their rated cooling performance under high-temperature, dry-heat conditions, with particular attention to their cooling efficiency.”
The Xinjiang Turpan Natural Environment Test and Research Center is China’s largest outdoor natural testing base for dry-heat environments. It is capable of testing eight categories of products, covering 31 product types and more than 300 performance indicators, including automobiles, metals and alloys, plastics, and other industrial products.
Nearby, rows of photovoltaic panels are also undergoing testing under the intense summer sun.
“Each group of solar panels is connected to a data collection unit that continuously records electricity generation from four panels connected in series,” said Guo Chunyun, deputy director of the center. “We also regularly remove the panels and send them to the laboratory to measure power output and generation efficiency while inspecting their physical condition.”
At present, 10 photovoltaic companies have entrusted the center with testing their products. To date, the center has conducted tests on more than 42,000 products, providing valuable data for developing standards on natural aging in dry-heat environments as well as advancing testing technologies and methodologies.
China
Inside China’s first quantum-powered demonstration substation
By Xu Jing, People’s Daily
Quantum technology is beginning to transform the way China’s power grids operate. At the 220-kilovolt Houdian Quantum Application Demonstration Substation in Hefei, east China’s Anhui province, a suite of advanced quantum technologies is now in use. These include diamond-based quantum sensing materials to monitor current fluctuations, quantum-dot gas sensors to detect potential cable fire hazards and partial discharge faults inside switchgear, and other innovations that strengthen the intelligence, safety, and efficiency of grid operations.
Commissioned in November 2024, the facility is China’s first demonstration substation dedicated to the systematic application of quantum technologies. It has deployed 85 independently developed quantum devices across 18 categories, covering quantum sensing, quantum communication, and quantum computing.
The project represents a pioneering effort to integrate quantum technologies into power grid engineering, offering a new technological solution to the challenges faced by conventional power grids while supporting the development of a new-type power system.
The substation also represents a new generation of fully unattended intelligent substations.
“We have replaced many manual inspection tasks with high-precision quantum sensing equipment,” said Tian Teng, a young engineer at the digitalization institute of the electric power research institute under State Grid Anhui Electric Power Co., Ltd. “The new system can identify and diagnose equipment defects much faster, reducing both inspection costs and operating expenses.”
Inside the high-voltage switchgear hall, rows of power equipment operated steadily. Standing beside an out-of-service switchgear cabinet, Tian pointed to a small device mounted on its side.
“This is a quantum-dot multi-parameter sensor,” he explained. “It continuously monitors the cabinet’s internal environment and detects signals associated with partial electrical discharge, enabling us to assess the condition of the switchgear.”
He then pointed to another compact device attached to a cable beneath the cabinet.
“This is a distribution network current sensor. It monitors line loading in real time and can quickly and accurately locate faults along the transmission line.”
Quantum technologies are embedded throughout the facility — not just in these compact sensing devices.
Quantum technologies are embedded throughout the facility — not just in these compact sensing devices. A quantum lidar system installed on the rooftop monitors atmospheric particles and cloud conditions within a 15-kilometer radius, providing early warnings of weather-related risks. Quantum attitude sensors mounted on transmission towers can detect magnetic field changes as small as 1/10,000 of the Earth’s magnetic field, enabling highly accurate monitoring of tower alignment.
Besides, quantum encryption equipment supports both fiber-based quantum secure communications and “5G + quantum” encrypted communications, significantly enhancing cybersecurity across the power network.
The innovation extends beyond physical equipment. The substation has adopted a quantum computing-based approach for power flow analysis, which has been validated using the topology of a real-world power grid on Origin Wukong, China’s domestically developed quantum computer.
“This breakthrough provides an entirely new technical approach for large-scale power grid simulation,” Tian said. “It is expected to further improve the real-time analytical and computing capabilities of power systems.”
Why did China build this quantum-powered substation?
According to Tian, conventional power grids are increasingly facing three major challenges as renewable energy and power-electronics-based equipment become increasingly widespread: limited accuracy in equipment condition monitoring and delayed response; insufficient security for data transmission and control instructions; and the computational limitations of conventional computers when making rapid decisions for increasingly complex grid operations.
Developing a new-type power grid supported by quantum technologies has become an inevitable choice, he said.
Developing the necessary equipment, however, was far from straightforward.
There were no domestic precedents, no established standards and no mature technical solutions to follow, said Zhao Long, head of the power quantum sensing laboratory at the electric power research institute under State Grid Anhui Electric Power Co., Ltd.
“The biggest challenge came when supplies of high-quality diamond sensing materials were cut off by overseas suppliers, bringing the project close to a standstill,” he added.
The team eventually partnered with domestic materials researchers to develop customized alternatives. After repeated rounds of experimentation and testing, they achieved a breakthrough.
New engineering challenges soon emerged, including electromagnetic interference and adapting laboratory technologies to real operating conditions.
“For several consecutive months, we spent our days at the substation collecting data and tuning system parameters, and our nights back in the laboratory refining algorithms and improving packaging and shielding designs,” Zhao recalled.
“When the quantum current transformer finally displayed accurate readings on the monitoring screen, everyone on the team burst into applause. We had successfully bridged the ‘last mile’ from laboratory research to real-world engineering.”
According to project estimates, the application of quantum technologies enables the Houdian demonstration substation to reduce annual electricity measurement errors by more than 500,000 kilowatt-hours, while significantly improving the reliability and economic efficiency of grid operations.
Several quantum technologies first demonstrated at the substation have since been deployed elsewhere across Anhui province and are now being introduced to more regions across China.
China
Chinese robots expand global reach through diverse applications
By Ouyang Jie, Liu Junguo, People’s Daily
From factories and power plants to warehouses and emergency response sites, Chinese-made robots are increasingly being deployed across a wide range of applications worldwide.
This expansion reflects not only the rapid growth of China’s robotics industry but also the ability of Chinese companies to develop products tailored to diverse market needs, improve service capabilities, and build localized operations overseas.
At the assembly workshop of Pudu Robotics, a Chinese service robotics manufacturer located in Jianhu county, east China’s Jiangsu province, five production lines were running at full capacity for 10 hours.
Workers at assembly stations were installing new batches of lidar modules into robot bodies. The company’s production schedule has already fully booked through 2027, with factory production plans significantly tighter than last year.
Founded in 2016, Pudu Robotics has focused on the global commercial service robot market. It has shipped more than 130,000 units and served over 50,000 end customers worldwide.
Since the beginning of this year, the company’s exports have already exceeded the total volume of the previous year, with products sold to 85 countries and regions. Its cleaning robots, in particular, have maintained year-on-year export growth of more than 100 percent for consecutive years, accounting for 29 percent of the global commercial cleaning robot market.
Pudu Robotics is just one example of Chinese intelligent robot companies expanding into overseas markets. According to customs data from Shenzhen, south China’s Guangdong province, exports of various types of robots from Shenzhen reached 6.94 billion yuan ($1.03 billion) in the first half of this year, representing a tenfold increase year-on-year. These products were shipped to more than 110 countries and regions.
Strong technological capabilities are at the core of the global competitiveness of Chinese manufacturing.
“Our quadruped robots have officially started operations at a nuclear power plant in Switzerland, carrying out frequent and routine autonomous inspections in high-risk areas,” said Yao Hengyan, assistant general manager of DEEP Robotics in Hangzhou, east China’s Zhejiang province.
The robot can climb slopes as steep as 45 degrees, navigate narrow spaces between equipment and access areas that are difficult for humans to reach. Equipped with thermal imaging and acoustic sensors, it can accurately detect potential hazards such as leaks, abnormal temperatures, and unusual equipment noises.
Inspection data is uploaded in real time to a digital management platform, which can automatically issue alerts and initiate responses once anomalies are detected.
Besides, the quadruped robots of the company are also used for factory security and underground pipeline inspection in Switzerland.
A diverse product portfolio has enabled Chinese robots to adapt to a broad range of global application scenarios.
Pudu Robotics has divided the market into 16 major industries and more than 800 categories of specific applications and tasks based on customer needs, said Zhang Tao, founder and CEO of the company. The company has continuously optimized the overall performance of its products to ensure they are “functional, user-friendly, and durable” in complex environments.
It has established four major product lines covering delivery, cleaning, industrial, and general-purpose embodied intelligence robots, with applications spanning multiple sectors, including manufacturing and warehousing logistics.
The successful deployment of DEEP Robotics’ quadruped robots at a Swiss nuclear power plant, where safety standards are extremely demanding, demonstrates the stability and reliability of China-made robots, Yao said.
The company has reached an agreement with its Swiss client to expand cooperation, and its robots, which can adapt to complex terrain and extreme weather conditions, have already been deployed in energy, industrial, and emergency response scenarios in various parts of the world.
As they continue to explore overseas markets, many Chinese robotics companies are shifting from simply exporting products to building localized brands and service networks.
Competition in China’s service robot sector has moved beyond price-performance advantages and entered a new stage where quality, brand recognition, and service capabilities are equally important, Zhang said. Customers are looking for not just a machine, but a comprehensive solution that can operate reliably over the long term.
To meet these needs, Pudu Robotics has established local offices and service centers in major global markets and built a cooperation network involving more than 1,000 distributors. The network provides partners with full-process support, including pre-sales consultation, sales assistance, deployment, after-sales maintenance, and rapid spare parts response, helping customers overcome concerns about adopting complex technologies.
The current penetration of robots remains relatively low, leaving broad room for future growth, Zhang said. As robots become increasingly integrated into various industries, different application scenarios will require different types of robots and capabilities. The company hopes to develop a unified “intelligent brain” for robots that can empower various products in fields such as delivery, cleaning, and industrial applications.
Pudu Robotics will continue expanding investment in technological innovation and product upgrades, making robots increasingly intelligent and capable of serving more industries worldwide, Zhang added.
China
Wuxi’s “Token Supermarket”: A one-stop AI model platform for local businesses
By Yao Xueqing, People’s Daily
When Li Tao, the software department supervisor at Sevice — a security technology company based in Jiangsu — opened Wuxi’s AI industry service platform, he navigated straight to the “Token Supermarket” on the homepage. He logged into his account to check usage metrics and his remaining balance.
Li’s company specializes in intelligent security, with software development as its core business. “Since last year, AI has handled 85 percent of our software development workflows,” Li said. The company needs to purchase tokens from various large language model platforms, with fees calculated based on usage.
Initially, the company’s demand for tokens was limited, and the cost was almost negligible. But as computing needs grew rapidly, monthly expenses increased. Different large models have different capabilities and applications, Li said. Companies not only have to cope with rising costs, but also manage and maintain multiple accounts and switch between different models, he added.
In May this year, Wuxi rolled out this city-level “Token Supermarket.” Li Tao visited the platform the very day it went live. Lined up on its virtual “shelves” were over 20 mainstream large models, covering nearly all those widely adopted by enterprises.
Thanks to the platform’s centralized procurement, most offerings are available at favorable rates. Even more convenient, users need only a single registered account to call upon different large models on demand.
The company immediately decided to register with the “Token Supermarket” and top up its account. Li did the math: with a monthly recharge of 20,000 yuan ($2,963), more than 30 engineers can use 4 billion to 5 billion tokens. The complimentary concurrent-access benefit package has also enabled more than 30 employees to work efficiently in parallel.
As a result, the company has cut research and development costs by nearly 30 percent, shortened software development cycles from two weeks to less than one week, and increased efficiency by 50 percent.
Why did Wuxi launch such a “Token Supermarket,” and what makes it unique?
According to Zhu Yiqing, deputy general manager of Wuxi Digital New Infrastructure Co., Ltd., which operates the platform, token usage is growing rapidly, but companies still face challenges such as high costs, complicated management of multiple AI model accounts and difficulties in calculating expenses.The “Token Supermarket” was developed to provide a one-stop purchasing platform and has already served more than 50 enterprises.
Its customers include not only companies like Li’s that purchase tokens to assist with daily office work, but also many enterprises that buy tokens as “bulk raw materials” for further processing and development.
Dramasmaker, a startup developing AI-powered animated storytelling production tools, is one such customer. The company was founded in August last year and spent more than six months independently developing a one-stop animation production system, which entered the testing and production phase in May of this year, said general manager Wei Jianfei.
The company needs to purchase large amounts of tokens, resulting in high costs. During the early startup stage, this placed considerable pressure on its cash flow, Wei said.
Zhu noted that the “Token Supermarket” can also be connected with financial services, with financial products to be integrated into the platform’s payment system.
Notably, staff members of the “Token Supermarket” are currently sprucing up its virtual premises: alongside an existing “brand zone,” a new “local-source offerings zone” has been rolled out.
According to Zhu, Wuxi’s computing-power industry is developing rapidly, with 19 intelligent computing centers now up and running, most of which deliver computing power for immediate sale.
Tokens generated by these intelligent computing centers are listed on the “Token Supermarket,” bringing cost-competitive options for users. The platform also bolsters the local computing-power sector while serving small and medium-sized enterprises.
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