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Not Just a Sporting Event, but Also a Technological Test: Insights into the World’s First Human-Robot Co-Run Marathon

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E-Town

BEIJING, CHINA – Media OutReach Newswire – 9 April 2025 – A scene even science fiction has yet to depict—humans and humanoid robots running side by side in a half-marathon — will become reality on ​April 13 in Beijing E-Town. Every spring, marathons sprout across China like bamboo shoots after rain. In Beijing, the world’s only “Dual Olympic City” and a global hub for science and innovation, the ​2025 Beijing E-Town Half-Marathon and Humanoid Robot Half-Marathon, scheduled for ​April 13, will pioneer a “sports + technology” format. For the first time, humanoid robots will register alongside human runners, start simultaneously, and share the 21.0975-kilometer course in an unprecedented fusion of innovation.

Li Quan, Member of the Party Working Committee and Deputy Director of the Administrative Committee of Beijing E-Town, revealed that the event has already attracted over ​30,000 human applicants. On the robotics front, global humanoid robot companies, research institutes, robotics clubs, universities, and other innovators have shown immense enthusiasm, with registration numbers soaring.

Notably, to ensure safety, ​physical barriers will separate human and robot runners, with distinct race rules and completion time standards. Yet this groundbreaking human-robot collaboration undeniably signals a bold leap for “technology stepping into reality.”

During a visit to training facilities, reporters observed teams racing against time to upgrade robotic components and intelligence levels, tackling technical challenges to enhance mobility. Some competing robots now reach a ​top speed of 12 km/h. To mitigate the physical strain of road running, some models have added shock-absorbing mechanisms, while others wear customized running shoes.

Liang Liang, Deputy Director of the Beijing E-Town Administrative Committee, explained that as the event is a ​global first with no prior experience or data to reference, both logistics and participants face significant hurdles. To support the robots, organizers have deployed dedicated support vehicles and robotic aid stations. Additionally, they are working closely with each team to refine technology, troubleshoot functions, and achieve developmental goals through pre-race collaboration.

At the ​2024 Paris Olympics, artificial intelligence revolutionized real-time data monitoring, 3D motion capture, and referee decision-making—boosting athlete training efficiency and competitive fairness while showcasing how technology elevates life’s value.

The upcoming human-robot “half-marathon” collaboration represents a ​new frontier where the humanoid robotics industry intersects with humanity, sports, and endurance challenges. Industry experts note that half-marathons strike an ideal balance between “challenge and accessibility”: the event’s low entry barrier contrasts with its rigorous test of physical stamina and mental resilience, culminating in profound personal achievement. By completing the same course, humanoid robots aim to validate industrial progress and refine human-centric technologies.

“This isn’t just a sports competition—it’s a ​stress test for technological breakthroughs and industrial growth,” asserted Xiong Youjun, CEO of the Beijing Humanoid Robot Innovation Center.

A participating robotics executive stated that “marathon-running robots” could accelerate technical maturity, spur industry standards, and drive innovation. On one front, the effort pushes upgrades in high-torque motors, flexible joints, and wear-resistant materials. On another, running’s demand for full-body coordination forces tighter integration of hardware-software systems and deeper partnerships between manufacturers and AI algorithm firms.

These advances promise to unlock ​transformative applications: deploying humanoid robots in disaster relief, long-range inspections, hazardous operations, smart manufacturing, and even elderly home care. As capabilities grow, such robots could also serve as AI training partners for elite athletes, “giving back” to sports development.

Industry experts emphasize that humanoid robots—comprising thousands of components—still face significant hurdles in maintaining stable, prolonged running.

Xiong Youjun explained, “Real-world road conditions differ vastly from lab environments.” To complete the race, robots require ​high-density integrated joints and bodies capable of enduring long distances with efficient heat dissipation. Second, precise coordination of all joints is critical for running, positioning, and dynamic obstacle avoidance—a test of core algorithm development and adaptability. Third, the marathon’s demands on stability, reliability, and battery life are immense, with slopes, turns, and uneven terrain pushing machine performance to its limits.

Given ​persistent technical challenges requiring breakthroughs in industrial development, alongside the disruptive impact of complex outdoor environments on robotic operations, current capabilities allow robots to run alongside humans but not truly compete with them. Thus, this event functions more as an ​industry dialogue and a ​robotic stress test than a traditional race.

For human participants and spectators, sharing the track with robots offers sensory thrills and intellectual expansion. These benefits are concrete: the “constructive interplay” between technology and society clarifies the boundaries of human-robot collaboration, reinforces the principle of “technology for humanity,” and accelerates the shift from ​coexistence to ​co-prosperity.

“As the essence of this event, humanoid robots ‘running marathons’ symbolize humanity’s imagination and dreams in motion—that’s the ultimate highlight,” said Li Quan. “Regardless of rankings or speed, the footprints left by these robots at the finish line hold greater value than any medal. The 21-kilometer course will end, but our quest for human-robot synergy never will.”

Energy

ExxonMobil’s Artificial Intelligence (AI) Breakthrough Signals New Era of Digital Exploration in Guyana Ahead of Caribbean Energy Week (CEW) 2027

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Etu Energias

As artificial intelligence transforms upstream decision-making, Guyana’s energy sector continues to attract investment and innovation ahead of the Caribbean Energy Week 2027 In-Country Launch in Georgetown on 1 September 2026

CAPE TOWN, South Africa, August 12, 2026/APO Group/ –ExxonMobil’s announcement that artificial intelligence has identified four new exploration opportunities within Guyana’s prolific Stabroek Block marks a significant milestone in the country’s digital transformation. By applying AI to historical discoveries, drilling results and subsurface data, the company is demonstrating how advanced analytics, machine learning, high-performance computing and next-generation seismic imaging can accelerate exploration, reduce costs and improve discovery success rates.

 

The breakthrough comes as Guyana targets crude oil production of 1.3 million barrels per day by 2027 and 1.7 million barrels per day by 2030, underscoring the growing role of digital technologies in maximizing resource development alongside continued investment in drilling and infrastructure.

Against this backdrop, the Caribbean Energy Week (CEW) 2027 Guyana In-Country Launch, taking place on 1 September 2026 at the Guyana Marriott Hotel in Georgetown, will bring together operators, technology providers, geoscience companies, investors and regulators to examine the latest developments shaping Guyana’s energy sector and build momentum ahead of CEW 2027 next July. Returning for its second edition, CEW provides a premier platform for advancing investment, showcasing new projects and highlighting the technologies driving the country’s next phase of upstream growth.

Momentum behind AI adoption continues to build. In May 2026, ExxonMobil Vice President of Exploration John Ardill confirmed the company was expanding its use of deep learning, machine learning and high-performance computing to analyze seismic data and identify hydrocarbon-bearing prospects that were previously more difficult to evaluate.

The company is simultaneously advancing an ambitious offshore drilling program. This month, ExxonMobil commenced new drilling activities in Guyana’s Exclusive Economic Zone, including the Whiptail development well and Rockhead-1 exploration well. Earlier this year, the company also sought environmental authorization for the Haimara gas-condensate development and has proposed a 35-well drilling campaign between 2028 and 2033, reinforcing confidence in Guyana’s long-term exploration potential.

These developments are creating growing opportunities for AI developers, digital technology providers, seismic specialists, engineering firms and oilfield service companies that can support increasingly data-driven exploration and field development activities.

As the first official milestone on the road to Caribbean Energy Week 2027, the Georgetown launch will provide a platform for industry leaders to examine the technologies, partnerships and investment strategies driving Guyana’s next phase of growth while strengthening collaboration across the Caribbean energy sector.

Distributed by APO Group on behalf of Energy Capital & Power.

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SOKOYO Advances Global Solar Street Lighting Capabilities

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SOKOYO

BEIJING, CHINA – Media OutReach Newswire – 12 August 2026 – SOKOYO, a top manufacturer of solar street lights, has installed 252 sets of lighting units in QatarEnergy’s solar power project in Ras Laffan and Masaieed in Qatar.

Installation of SOKOYO’s split solar street lights for the project being built by Samsung C&T Corp. was completed in July. The arrangement of solar panels was customized at the customer’s request for ease of maintenance.

“SOKOYO provided us with a specially customized solution for our power station,” said Ms. Kathy, senior procurement manager for Samsung. “The entire solar street lighting system consistently met our expectations for brightness, battery life and overall reliability.”

SOKOYO, founded in 2008, has manufactured more than 1 million lighting units installed in a wide range of settings across SoutheastAsia, Africa, the Middle East and Central Asia.

The company manufactures its own LED modules, solar panels, batteries, light housings and light poles. They have third-party certification for European Union and other safety and reliability standards, which qualifies them for export to global markets.

SOKOYO is regularly appointed to bodies that establish national and industry standards.

SOKOYO’s product line includes all-in-one solar street lights, all-in-two solar street lights and split-type solar street lights. They can be controlled remotely with IoT technology to improve safety and efficiency. Using solar power makes them immune to disruptions in supplies of oil and gas.

As the industry evolves to focus on “system-level R&D,” SOKOYO is reducing customer costs by enhancing reliability and resistance to heat and cold. To improve efficiency, it is developing smart lighting and IoT applications. It is promoting modular production, intelligent manufacturing and standardized process management.

The research team has seven engineers, some with more than two decades of industry experience. They develop technology for a wide range of environments and customer needs.

SOKOYO has experience in markets including Thailand, thePhilippines, Pakistan, Saudi Arabia and Nigeria. It has developed technology to cope with heat, humidity, sandstorms and low light during extended rains, a challenge in central Africa and other areas.

In Uganda, SOKOYO supplied 1,000 light sets to help improve safety on a busy expressway between the capital, Kampala, and the eastern industrial center of Jinja. They provide the first nighttime lighting on a 22-kilometer section of road crowded with trucks, buses and motorcycles.

In Yemen and the United Arab Emirates, SOKOYO lights use LED modules developed to cope with heat, sun and sand.

The company supplied more than 2,000 light units to Saudi Arabia’s planned high-tech city of NEOM as part of the Saudi 2030 Vision plan.

Customers can use SOKOYO’s test facilities to try out different light configurations. Lights can be tested on roads of up to four lanes in an1,100-square-meter darkroom. Designers and urban planners can ensure light is distributed effectively, eliminating dark areas on the road and improving safety.

Batteries are tested to confirm they resist crushing, heat and cold, vibration, overcharging or being dropped. LED modules are drenched in salt spray for up to 72 hours to make sure they resist corrosion.

SOKOYO has been chosen for bodies that formulated eight national and industry standards including the “General Technical Specification for Solar Photovoltaic Lighting Devices” in 2025 with definitions and standards for split-type and integrated solar devices.

SOKOYO products have third-party certification that they meet standards of the International Electrotechnical Commission (IEC) and other bodies.Its batteries meet the requirements of the CB scheme under the IEC, recognized in more than 50 countries. Tests confirm they withstand overcharging, high temperature, vibration, impact and short circuit.

The company’s solar panels received IEC certification that they meet standards for electric shock protection, temperature changes, damp, heat, humidity, hail impact and other factors.

SOKOYO participates in efforts to improve the industry’s reputation by promoting “zero false labeling” and reliable products that refuse to cut corners.

SOKOYO pays attention to the environment. Its products are designed to minimize light pollution and limit disruption for wildlife, stargazers and the public.
The issuer is solely responsible for the content of this announcement.

 

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South Africa’s Multi-Billion-Dollar Energy Transition Pipeline Takes Shape Ahead of African Energy Week (AEW) 2026

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African Energy Chamber

From LNG terminals and renewable energy corridors to hydrogen hubs and storage solutions, African Energy Week’s “Invest in South Africa” session will highlight the opportunities driving the country’s transition toward a more diversified and resilient energy future

CAPE TOWN, South Africa, August 11, 2026/APO Group/ –South Africa is undergoing one of the most significant transformations in its energy sector, as the country works to diversify its power mix, reduce reliance on coal and develop a more integrated energy system capable of supporting long-term economic growth. Combining electricity, natural gas, liquid fuels, hydrogen and energy storage, this evolving model is creating new opportunities for infrastructure development, industrial investment and public-private partnerships.

These developments will be explored during the “Invest in South Africa: Developing Integrated Energy Systems for an Inclusive and Resilient Energy Future” session at African Energy Week (AEW) 2026, where policymakers, investors and industry leaders will assess the commercial strategies, policy frameworks and financing models required to build a more flexible and diversified energy system.

The discussion comes as South Africa continues implementing its Just Energy Transition Partnership, a landmark initiative launched in 2021 that has mobilized an initial $8.5 billion commitment from international partners to support the country’s transition through investments in renewable energy, grid infrastructure, electric vehicles and green hydrogen. The program has since expanded discussions around blended finance mechanisms and private sector participation to accelerate project deployment.

South Africa’s energy transition represents one of the continent’s most significant investment opportunities

While renewable energy remains central to South Africa’s future power mix, gas infrastructure is expected to play an important role in providing flexibility as the country integrates increasing volumes of intermittent wind and solar power. The government’s Gas Master Plan and emerging gas policy framework aim to support the development of a domestic gas market while enabling new infrastructure investments.

Several major gas infrastructure projects are advancing as part of this strategy. At Richards Bay, the proposed Zululand Energy Terminal is being developed as South Africa’s first LNG import terminal and is expected to support Eskom’s planned 3,000 MW gas-to-power program, strengthening energy security and grid flexibility. Meanwhile, the Ngqura LNG terminal development at the Coega Special Economic Zone is progressing as a strategic gas import and regasification hub designed to support industrial users, independent power producers and future gas-to-power capacity. Together, these projects could establish critical infrastructure for South Africa’s emerging gas market while supporting industrial growth and the transition toward a more diversified energy system.

At the same time, the country is positioning itself as a potential global player in green hydrogen. Projects such as Sasol’s Boegoebaai green hydrogen development in the Northern Cape and the proposed Boegoebaai Special Economic Zone are targeting large-scale renewable-powered hydrogen production, with ambitions to develop export opportunities and create new industrial value chains.

The “Invest in South Africa” session will examine how the country can integrate gas, renewables, hydrogen and storage into a resilient energy system while managing the transition away from coal. Discussions will focus on investment pathways, infrastructure priorities and the partnerships required to deliver reliable power and inclusive economic growth.

“South Africa’s energy transition represents one of the continent’s most significant investment opportunities, but success will depend on building an energy system that delivers reliability, affordability and growth,” says NJ Ayuk, Executive Chairman of the African Energy Chamber. “By bringing together investors, policymakers and industry leaders, AEW 2026 will help advance the partnerships needed to transform South Africa’s energy ambitions into practical projects that benefit the economy.”

As South Africa reshapes its energy landscape, AEW 2026 will provide a platform for stakeholders to identify opportunities across gas, power, renewables, hydrogen and infrastructure – helping define the next chapter of the country’s energy future.

Distributed by APO Group on behalf of African Energy Chamber.

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