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Predicting the metabolic energy costs of bipedalism using evolutionary robotics

机译:使用进化机器人技术预测两足动物的代谢能成本

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摘要

To understand the evolution of bipedalism among the hominoids in an ecological context we need to be able to estimate the energetic cost of locomotion in fossil forms. Ideally such an estimate would be based entirely on morphology since, except for the rare instances where footprints are preserved, this is the only primary source of evidence available. In this paper we use evolutionary robotics techniques (genetic algorithms, pattern generators and mechanical modeling) to produce a biomimetic simulation of bipedalism based on human body dimensions. The mechanical simulation is a seven-segment, two-dimensional model with motive force provided by tension generators representing the major muscle groups acting around the lower-limb joints. Metabolic energy costs are calculated from the muscle model, and bipedal gait is generated using a finite-state pattern generator whose parameters are produced using a genetic algorithm with locomotor economy (maximum distance for a fixed energy cost) as the fitness criterion. The model is validated by comparing the values it generates with those for modern humans. The result (maximum efficiency of 200 Jm(-1)) is within 15% of the experimentally derived value, which is very encouraging and suggests that this is a useful analytic technique for investigating the locomotor behaviour of fossil forms. Initial work suggests that in the future this technique could be used to estimate other locomotor parameters such as top speed. In addition, the animations produced by this technique are qualitatively very convincing, which suggests that this may also be a useful technique for visualizing bipedal locomotion. [References: 35]
机译:为了了解生态环境中类人动物中两足动物的进化,我们需要能够估计化石形式的运动的能量消耗。理想情况下,这样的估计将完全基于形态,因为除了保留脚印的罕见情况外,这是唯一可用的主要证据来源。在本文中,我们使用进化机器人技术(遗传算法,模式生成器和机械建模)来基于人体尺寸生成仿生的两足动物模拟。机械模拟是一个七段二维模型,其动力由张力发生器提供,该发生器代表作用在下肢关节周围的主要肌肉群。从肌肉模型计算出代谢能量消耗,并使用有限状态模式生成器生成双足步态,该生成器的参数是使用遗传算法(以运动经济性(固定能量消耗的最大距离))作为适应标准来生成的。通过将其生成的值与现代人类的值进行比较来验证该模型。结果(最大效率为200 Jm(-1))在实验得出的值的15%以内,这是非常令人鼓舞的,并表明这是研究化石形式的运动行为的有用分析技术。初步工作表明,将来该技术可用于估计其他运动参数,例如最高速度。此外,用这种技术制作的动画在质量上非常令人信服,这表明这对于可视化双足运动也可能是有用的技术。 [参考:35]

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