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AI Robots That “Refuse to Die”

Northwestern University scientists develop resilient meta-machines capable of self-adaptation and continued operation

Soldiers at Northwestern University have developed advanced robots that are powered by an AI, or smart mind. They can continue to work and reactivate themselves. These robots are called “metamachines,” and the most terrifying thing about them is that they do not turn off easily, that is, their property of “dying.”

Under his leadership, the team has developed robots that not only move quickly with the help of the eye, but also replace themselves when they are injured or broken.

During the experiment, even when the robots removed some marks or were damaged, they still walked towards their goal. Their enjoyment rate is more than 90%, which shows much stronger than that of ordinary machines.

In the design process, AI designed the response structures and finally developed the optimal shapes for movement.

These robots are made of small 3D printed targets or units, which are flexible machines and instead of walking on rough terrain like sand or grass, they move at a rate of 1000 feet per second, depending on their length.

Their movement is similar to that of a biological system, the starfish (starfish) reproducing itself, which makes these robots highly adaptable.

The idea is that these robots could revolutionize search and rescue operations. In an accident like an earthquake, when ordinary machines fail under the rubble, this flexible “meta-machine” can help people who are trapped.

The technology of these robots is based on automatic evolution (automatic evolution) and AI video design. AI is ready to develop movements and to choose the most effective forms for the public. This process not only increases speed and then, but also improves the robot’s damage or endurance.

These robots can be transformed to work during an outage. In an earthquake, landslide, or industrial accident, where machinery fails under debris, these “meta” can continue to work, searching for trapped people and assisting in rescues. This ability to operate autonomous robotics creates new opportunities in the environment for damage.

Moreover, the ability of these robots to self-heal and adapt to situations shows that IMS machines can learn from immune challenges in real time. This breakthrough is a major milestone in robotics, as it shows that machines are approaching the strength and robustness of living organisms and can blur the line between technology and biology.

Although their weak movements may seem strange or frightening to some, their development has been a major breakthrough in autonomous robotics and AI design.

This could open up new avenues for safe and effective operations and research in robust robots.

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