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Darwin's Devices: What Evolving Robots Can…
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Darwin's Devices: What Evolving Robots Can Teach Us About the History of Life and the Future of Technology (edición 2012)

por John Long (Autor)

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"What happens when we let robots play the game of life? The challenge of studying evolution is that the history of life is buried in the past--we can't witness the dramatic events that shaped the adaptations we see today. But biorobotics expert John Long has found an ingenious way to overcome this problem: he creates robots that look and behave like extinct animals, subjects them to evolutionary pressures, lets them compete for mates and resources, and mutates their 'genes'. In short, he lets robots play the game of life. In Darwin's Devices, Long tells the story of these evolving biorobots--how they came to be, and what they can teach us about the biology of living and extinct species. Evolving biorobots can replicate creatures that disappeared from the Earth long ago, showing us in real time what happens in the face of unexpected environmental challenges. Biomechanically correct models of backbones functioning as part of an autonomous robot, for example, can help us understand why the first vertebrates evolved them. But the most impressive feature of these robots, as Long shows, is their ability to illustrate the power of evolution to solve difficult technological challenges autonomously--without human input regarding what a workable solution might be. Even a simple robot can create complex behavior, often learning or evolving greater intelligence than humans could possibly program. This remarkable idea could forever alter the face of engineering, design, and even warfare. An amazing tour through the workings of a fertile mind, Darwin's Devices will make you rethink everything you thought you knew about evolution, robot intelligence, and life itself"--… (más)
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Título:Darwin's Devices: What Evolving Robots Can Teach Us About the History of Life and the Future of Technology
Autores:John Long (Autor)
Información:Basic Books (2012), Edition: 1, 288 pages
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Darwin's Devices: What Evolving Robots Can Teach Us About the History of Life and the Future of Technology por John Long

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Meandering discussion of the use of mechanical fish to study evolution. ( )
  markm2315 | Jul 1, 2023 |
I put this down for a while, but it is still on my radar to finish. Long looks at evolutionary biology and at using robots to better study how the mechanisms may work. Specifically he looks at fish locomotion. If you can build a robot that mimics the motion, you can gain insight in to HOW that animal moves in that way, and how that came about. I find Long's style not so light that this is easy, popular reading, but not heavy and overbearing to prevent the non-academic from enjoying it. ( )
  MuzLibrary | Apr 28, 2015 |
The author describes his experiences with biomimetic robots as a research tool in evolutionary biology -- particularly the evolution of fish vertebrae. Of more interest to me were the short forays into neuroscience and artificial intelligence. Anyone looking for speculations on machine consciousness, transhumanism, etc, will be disappointed.
  fpagan | May 29, 2012 |
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"What happens when we let robots play the game of life? The challenge of studying evolution is that the history of life is buried in the past--we can't witness the dramatic events that shaped the adaptations we see today. But biorobotics expert John Long has found an ingenious way to overcome this problem: he creates robots that look and behave like extinct animals, subjects them to evolutionary pressures, lets them compete for mates and resources, and mutates their 'genes'. In short, he lets robots play the game of life. In Darwin's Devices, Long tells the story of these evolving biorobots--how they came to be, and what they can teach us about the biology of living and extinct species. Evolving biorobots can replicate creatures that disappeared from the Earth long ago, showing us in real time what happens in the face of unexpected environmental challenges. Biomechanically correct models of backbones functioning as part of an autonomous robot, for example, can help us understand why the first vertebrates evolved them. But the most impressive feature of these robots, as Long shows, is their ability to illustrate the power of evolution to solve difficult technological challenges autonomously--without human input regarding what a workable solution might be. Even a simple robot can create complex behavior, often learning or evolving greater intelligence than humans could possibly program. This remarkable idea could forever alter the face of engineering, design, and even warfare. An amazing tour through the workings of a fertile mind, Darwin's Devices will make you rethink everything you thought you knew about evolution, robot intelligence, and life itself"--

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