From science fair to strategic showcase: a decade of China’s robot games

From science fair to strategic showcase: a decade of China’s robot games

By Reuters

BEIJING: It’s been called the Robot Olympics. But unlike the human Olympics, Team China is collecting almost all the medals.

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Over the past decade, robotic competitions in China have provided a window into the advances of a now-surging sector – and the importance of its success as a strategic industry singled out by ​President Xi Jinping.

Once a curiosity organized by academic teams and hobbyists, China’s robot games have become a national showcase celebrated by state ‌media — and, increasingly, a proving ground for commercial products from companies looking to show real-world applications beyond the spectacle.

The five-day World Humanoid Robot Games – the latest and biggest incarnation of the competition – began on Saturday in Beijing.

Here’s a timeline of how the competitions, and the underlying technology, have developed:

1999 – 2014: Robotics as college sport

Robotics competitions in China started as lower-budget affairs backed ​by an industry association and the local government of Fujian. The competitors were mostly college teams. The vibe was more science project than showcase ​for the high-flying companies that emerged later.

In one showcase event, small, wheeled robots played a competitive version of soccer with a ⁠limited range of pre-programmed automation to avoid collisions and find the ball.

2015: Robotics as the “crown jewel”

In 2015, Beijing hosted the first World Robot Conference, marking the ​industry’s emergence as a national priority. A year earlier, Xi had declared robotics was the “crown jewel” of advanced manufacturing, according to state media.

At the 2015 exhibition, mobile ​robots faced off in badminton demonstrations, tracking shuttlecocks and returning volleys. It was a crowd-pleasing showcase — but hardly a breakthrough.

Robots like this relied on distance-image sensors developed in the 2010s and an even-older technology for estimating the track of an object pioneered by British defence researchers in the 1990s.

2023: From the lab to the living room

By 2023, the World Robot Conference had ​become a high-profile venue for established companies to showcase innovation and build buzz.

Along the way attention began to shift to China’s competitive advantage on pricing.

Xiaomi’s robot dog “Cyberdog” ​drew a ring of onlookers filming on smartphones.

The Cyberdog, first released as a hobbyist platform, cost about $1,500 on release. By comparison, Boston Dynamics’ quadruped Spot was selling for over $75,000.

2025-2026: From ‌stumbling start ⁠to great leap

In April 2025, humanoid robots lined up alongside human runners for the world’s first robot half-marathon in Beijing.

Engineers jogged alongside their machines, ready to intervene. Only a fraction of the robots that started the course finished. Some collapsed on the starting line. Others crashed into the railing just a few metres in.

A year later, the robots were ready. A Unitree H1 robot sprinted unaccompanied down the finishing straight of the second Beijing half-marathon — no chaperone in sight.

Of the more than ​100 robot teams that entered the competition ​in 2026, 47 finished, state media ⁠reported.

Most striking: a humanoid robot by Chinese smartphone maker Honor named “Flash” ran the half marathon autonomously in 50 minutes and 26 seconds. That was faster than the human world record set just a month earlier by almost 7 minutes.

Analysts and ​executives attributed the sharp and widespread improvements to the competitiveness of a growing supply chain bolstered by subsidies and the ​falling cost of ⁠components.

The visible hand of the state drove some of those gains.

Beijing’s 2021 five-year blueprint for the robotics sector had promised subsidies, research tax breaks and financing, setting a goal for China to become “a global wellspring of robotics technology innovation.”

2026 and onward: It’s all in the hands

In 2026, the World Humanoid Robot Games add a challenge for robotic hands.

Robots ⁠will be ​judged on their speed and accuracy in precision tasks: tightening screws, opening bottles and picking up ​beads with tweezers.

Analysts say engineering a hand is the most complex challenge for building a humanoid that can work with the precision and touch of a human.

The shift to work tasks in the ​games also reflects the increasingly crowded industry’s biggest problem: showing prototypes can work in the real world.

Also read:Pakistan army chief Munir to visit Tehran amid US-Iran tensions

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