Gras Robin, Devaurs Didier, Wozniak Adrianna, Aspinall Adam
University of Windsor, School of Computer Science, 401 Sunset Avenue, N9B 3P4 Windsor, Ontario, Canda.
Artif Life. 2009 Fall;15(4):423-63. doi: 10.1162/artl.2009.Gras.012.
We present an individual-based predator-prey model with, for the first time, each agent behavior being modeled by a fuzzy cognitive map (FCM), allowing the evolution of the agent behavior through the epochs of the simulation. The FCM enables the agent to evaluate its environment (e.g., distance to predator or prey, distance to potential breeding partner, distance to food, energy level) and its internal states (e.g., fear, hunger, curiosity), and to choose several possible actions such as evasion, eating, or breeding. The FCM of each individual is unique and is the result of the evolutionary process. The notion of species is also implemented in such a way that species emerge from the evolving population of agents. To our knowledge, our system is the only one that allows the modeling of links between behavior patterns and speciation. The simulation produces a lot of data, including number of individuals, level of energy by individual, choice of action, age of the individuals, and average FCM associated with each species. This study investigates patterns of macroevolutionary processes, such as the emergence of species in a simulated ecosystem, and proposes a general framework for the study of specific ecological problems such as invasive species and species diversity patterns. We present promising results showing coherent behaviors of the whole simulation with the emergence of strong correlation patterns also observed in existing ecosystems.
我们首次提出了一种基于个体的捕食者 - 猎物模型,其中每个智能体的行为都由模糊认知图(FCM)建模,从而允许智能体行为在模拟的各个时期不断演变。FCM使智能体能够评估其环境(例如,与捕食者或猎物的距离、与潜在繁殖伙伴的距离、与食物的距离、能量水平)及其内部状态(例如,恐惧、饥饿、好奇心),并选择几种可能的行动,如逃避、进食或繁殖。每个个体的FCM都是独特的,并且是进化过程的结果。物种的概念也是以这样一种方式实现的,即物种从不断进化的智能体群体中出现。据我们所知,我们的系统是唯一允许对行为模式与物种形成之间的联系进行建模的系统。模拟产生了大量数据,包括个体数量、个体的能量水平、行动选择、个体年龄以及与每个物种相关的平均FCM。本研究调查宏观进化过程的模式,例如模拟生态系统中物种的出现,并为研究诸如入侵物种和物种多样性模式等特定生态问题提出了一个通用框架。我们展示了有前景的结果,表明整个模拟具有连贯的行为,同时也观察到在现有生态系统中出现的强相关模式。