>Autonomous systems are set to revolutionize how we move and work, where we live and how we interact with each other.
>Physical autonomous systems – referred to simply as autonomous systems in this article – are the result of bringing together mechanical engineering, artificial intelligence (AI), sensor technology and connectivity. They can be seen as the next AI frontier, which leaps from the digital realm into the physical world to perform complex tasks in unstructured environments.
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>Autonomous systems are set to revolutionize how we move and work, where we live and how we interact with each other.
>Physical autonomous systems – referred to simply as autonomous systems in this article – are the result of bringing together mechanical engineering, artificial intelligence (AI), sensor technology and connectivity. They can be seen as the next AI frontier, which leaps from the digital realm into the physical world to perform complex tasks in unstructured environments.
>As the International Telecommunication Union’s head of strategic engagement [highlighted](https://www.reuters.com/technology/un-recruits-robots-strive-meet-global-development-goals-2023-07-05/) in 2023, robots may take off in the next few years in the same way that generative AI hit the mainstream that year.
>The potential impact of autonomous systems is manyfold, from becoming a [key asset](https://www.reuters.com/technology/un-recruits-robots-strive-meet-global-development-goals-2023-07-05/) to meeting the UN’s global development goals, to being the driver of reimagining the limits of productivity and growth.