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The Indiana Experiment: Investigating the Role of Anticipation and Attention in a Dynamic Environment

机译:印第安那实验:调查动态环境中预期和注意的作用

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We investigating the role of anticipation and attention in a dynamic environment in a number of large scale simulations of an agent that tries to negotiate a number of gates that continuously open and close. In particular we have looked at learning mechanisms that can predict the future positions of the gates and control strategies that will allow the agent to pass through the gates unharmed. The simulations reported below use the AARC architecture [1]. This architecture combines a large number of different cognitive mechanisms. In Experiment 1, the task for the agent is to pass through a single gate and in Experiment 2, to pass through three successive gates. The results shows that the AARC architecture is flexible enough to handle very diverse situations. It is also somewhat surprising that linear predictors are sufficient in most cases.
机译:我们在对代理进行大量大规模模拟的过程中,研究了动态环境中的预期和注意力的作用,这些尝试试图协商一些不断打开和关闭的门。特别是,我们研究了可以预测登机口未来位置的学习机制和控制策略,这些策略将使代理不受伤害地通过登机口。下面报告的模拟使用AARC体系结构[1]。这种架构结合了许多不同的认知机制。在实验1中,代理的任务是通过单个门,而在实验2中,任务通过三个连续的门。结果表明,AARC体系结构足够灵活,可以处理各种情况。在大多数情况下,线性预测变量就足够了,这也有些令人惊讶。

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