Behavioural Plasticity Can Help Evolving Agents in Dynamic Environments but at the Cost of Volatility

Chloe M. Barnes, A. Ekárt, K. Ellefsen, K. Glette, P. R. Lewis, J. Tørresen
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引用次数: 2

Abstract

Neural networks have been widely used in agent learning architectures; however, learnings for one task might nullify learnings for another. Behavioural plasticity enables humans and animals alike to respond to environmental changes without degrading learned knowledge; this can be achieved by regulating behaviour with neuromodulation—a biological process found in the brain. We demonstrate that by modulating activity-propagating signals, neurally trained agents evolving to solve tasks in dynamic environments that are prone to change can expect a significantly higher fitness than non-modulatory agents and also achieve their goals more often. Further, we show that while behavioural plasticity can help agents to achieve goals in these variable environments, this ability to overcome environmental changes with greater success comes at the cost of highly volatile evolution.
行为可塑性可以帮助在动态环境中进化的代理,但代价是波动性
神经网络已广泛应用于智能体学习体系结构;然而,一项任务的学习可能会使另一项任务的学习无效。行为可塑性使人类和动物都能在不降低所学知识的情况下对环境变化作出反应;这可以通过神经调节(一种在大脑中发现的生物过程)来调节行为来实现。我们证明,通过调节活动传播信号,经过神经训练的智能体在容易变化的动态环境中解决任务,可以预期比非调节智能体具有更高的适应度,并且也更经常地实现目标。此外,我们表明,虽然行为可塑性可以帮助代理在这些可变的环境中实现目标,但这种以更大的成功克服环境变化的能力是以高度不稳定的进化为代价的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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