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- 000 02779cam a2200373 i 4500
- 008 210420s2021 njua b 001 0 eng d
- 020 __ |a 9780691211688: |c CNY686.34
- 260 __ |a Princeton : |a Oxford ; |b Princeton University Press, |c 2021.
- 035 __ |a (OCoLC)on1246627149
- 035 __ |a (OCoLC)1246627149
- 040 __ |a YDX |b eng |c YDX |e rda |d BDX |d UKMGB |d TOH |d OCLCO |d YDX
- 050 _4 |a TJ211 |b .E44 2021
- 100 1_ |a Egerstedt, Magnus, |e author.
- 245 10 |a Robot ecology : |b constraint-based design for long-duration autonomy / |c Magnus Egerstedt.
- 246 30 |a Constraint-based design for long-duration autonomy
- 300 __ |a xix, 333 pages : |b illustrations (black and white) ; |c 25 cm
- 336 __ |a text |b txt |2 rdacontent
- 337 __ |a unmediated |b n |2 rdamedia
- 338 __ |a volume |b nc |2 rdacarrier
- 504 __ |a Includes bibliographical references and index.
- 505 2_ |a Long-duration autonomy -- Constraint-based control -- Robots iin the wild.
- 520 __ |a "Robots are increasingly leaving the confines of laboratories, warehouses, and manufacturing facilities, venturing into agriculture and other settings where they must operate in uncertain conditions over long timescales. This multidisciplinary book draws on the principles of ecology to show how robots can take full advantage of the environments they inhabit, including as sources of energy. Magnus Egerstedt introduces a revolutionary new design paradigm-robot ecology-that makes it possible to achieve long-duration autonomy while avoiding catastrophic failures. Central to ecology is the idea that the richness of an organism's behavior is a function of the environmental constraints imposed by its habitat. Moving beyond traditional strategies that focus on optimal policies for making robots achieve targeted tasks, Egerstedt explores how to use survivability constraints to produce both effective and provably safe robot behaviors. He blends discussions of ecological principles with the development of control barrier functions as a formal approach to constraint-based control design, and provides an in-depth look at the design of the SlothBot, a slow and energy-efficient robot used for environmental monitoring and conservation. Visionary in scope, Robot Ecology presents a comprehensive and unified methodology for designing robots that can function over long durations in diverse natural environments"-- |c Provided by publisher.
- 650 _0 |a Robots |x Environmental aspects.
- 650 _0 |a Autonomous robots |x Design and construction.
- 650 _0 |a Robotics |x Environmental aspects.