Connect with us

Published

on

A new generation of robotic insects has been developed with the ability to fly significantly longer than previous models. Researchers have created a design that enhances endurance, agility, and structural efficiency, allowing these robotic insects to support artificial pollination on a much larger scale. The advancement is expected to improve agricultural yields while reducing environmental impact. The technology addresses key limitations of earlier prototypes, particularly flight duration and efficiency, making them more viable for real-world applications. The robots have been engineered to store sufficient power while maintaining a lightweight structure.

Flight Capabilities Enhanced Through Structural Adjustments

According to the study published in Science Robotics, the new robotic insects have been designed to fly up to 100 times longer than their predecessors. Previous versions struggled with lift and stability due to excessive wing numbers and inefficient motion. The updated design features a structure with four units, each equipped with a single flapping wing, allowing for more controlled flight dynamics. By reducing the number of wings, excess energy consumption has been minimised, improving the robot’s overall performance.

Kevin Chen, Associate Professor of Robotics at MIT, stated to Live Science that the flight demonstrated in the research surpasses the total flight time accumulated by previous robotic insect models. It was noted that the updated wing design has reduced stress on the flexures, contributing to longer endurance. The improved structure has also enabled space for power sources, making the robotic insects more practical for field applications.

Challenges in Mimicking Natural Flight Mechanisms

Researchers highlighted that previous designs included eight wings per device, which limited efficiency due to excessive airflow resistance. It was observed that real insects rely on finely controlled wing movements, whereas the initial robotic versions lacked this level of precision. Efforts are being made to replicate the muscle-like movements of insect wings by refining signal transmissions to the robotic structure.

Future Developments in Artificial Pollination

The team aims to further refine the robotic insects by integrating sensors and computational elements to enhance autonomous functionality. It was stated that achieving a balance between weight and battery capacity remains a challenge. Over the next five years, efforts will be directed toward improving navigation and control systems, ensuring these robotic insects can operate effectively in agricultural settings.

For the latest tech news and reviews, follow Gadgets 360 on X, Facebook, WhatsApp, Threads and Google News. For the latest videos on gadgets and tech, subscribe to our YouTube channel. If you want to know everything about top influencers, follow our in-house Who’sThat360 on Instagram and YouTube.


A Star With a Planet May Be Racing Through the Galaxy at Record Speed



Motorola Razr+ 2025 Design, Key Features Leaked; May Arrive as Razr 60 Ultra in Select Markets

Continue Reading

Science

X-Ray Nebula Discovery Brings Astronomers Closer to Solving Cosmic Ray Mystery

Published

on

By

A new study has linked an unexplained LHAASO detection to a pulsar-powered X-ray nebula, confirming it as a rare PeVatron capable of accelerating particles to extreme energies. The discovery is a major step toward solving the long-standing mystery of galactic cosmic rays. Researchers are now combining X-ray, gamma-ray and neutrino observations to trace these powerful …

Continue Reading

Science

China’s Massive JUNO Experiment Delivers Its First World-Class Neutrino Results

Published

on

By

China’s Jiangmen Underground Neutrino Observatory has delivered world-class results after only 59 days of data collection, achieving the most precise measurements yet of two major neutrino oscillation parameters. JUNO’s early performance surpasses all previous experiments, confirming a small but intriguing discrepancy between solar and reactor neutrino observation…

Continue Reading

Science

China Tests Humanoid Robots to Guide Travellers at Border Crossing

Published

on

By

China has begun testing UBTech’s Walker humanoid robots at a border facility near Vietnam, aiming to use them for guiding travellers, managing queues and supporting logistics tasks. The robots, arriving in December, feature autonomous battery-swapping for extended operation. The US$37 million contract reflects Beijing’s ambition to dominate global robotics and AI….

Continue Reading

Trending