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Energy and Complexity in Evolving Collective Robot Bodies and Brains

机译:不断发展的集体机器人身体和大脑的能量和复杂性

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The impact of the environment on evolving increasingly complex morphologies (bodies) and controllers (brains) remains an open question in evolutionary biology and has important implications for the evolutionary design of robots. This study uses evolutionary robotics as an experimental platform to evaluate relationships between environment complexity and evolving body-brain complexity given energy costs on evolving complexity. We evolve robot body-brain designs for increasingly complex environments (difficult cooperative transport tasks) in a collective robotic gathering simulation. The impact of complexity costs on body-brain evolution is evaluated across such increasingly complex environments. Results indicate that complexity costs enable the evolution of simpler body-brain designs that are effective in simple environments but yield negligible behavior (task performance) differences in more complex environments.
机译:环境对不断发展的复杂形态(主体)和控制器(大脑)的影响仍然是进化生物学中的一个悬而未决的问题,并且对机器人的进化设计具有重要意义。这项研究使用进化机器人技术作为实验平台,以评估环境复杂性与身体脑部复杂性之间的关系(在能量成本不断变化的情况下)。我们在集体机器人聚集模拟中针对日益复杂的环境(困难的协作运输任务)发展了机器人的身体大脑设计。在这种日益复杂的环境中,评估了复杂性成本对人体大脑进化的影响。结果表明,复杂性成本使更简单的脑部设计得以发展,这些设计在简单的环境中有效,但在更复杂的环境中行为(任务性能)差异可忽略不计。

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