**arXiv ID:** 1904.03178 **Authors:** Joseph Early **Published:** 2019-04-05T17:57:29Z **Abstract:** A key stepping stone in the development of an artificial general intelligence (a machine that can perform any task), is the production of agents that can perform multiple tasks at once instead of just one. Unfortunately, canonical methods are very prone to catastrophic forgetting (CF) - the act of overwriting previous knowledge about a task when learning a new task. Recent efforts have develop...
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# Reducing catastrophic forgetting when evolving neural networks
**arXiv ID:** 1904.03178
**Authors:** Joseph Early
**Published:** 2019-04-05T17:57:29Z
**Abstract:**
A key stepping stone in the development of an artificial general intelligence (a machine that can perform any task), is the production of agents that can perform multiple tasks at once instead of just one. Unfortunately, canonical methods are very prone to catastrophic forgetting (CF) - the act of overwriting previous knowledge about a task when learning a new task. Recent efforts have developed techniques for overcoming CF in learning systems, but no attempt has been made to apply these new techniques to evolutionary systems. This research presents a novel technique, weight protection, for reducing CF in evolutionary systems by adapting a method from learning systems. It is used in conjunction with other evolutionary approaches for overcoming CF and is shown to be effective at alleviating CF when applied to a suite of reinforcement learning tasks. It is speculated that this work could indicate the potential for a wider application of existing learning-based approaches to evolutionary systems and that evolutionary techniques may be competitive with or better than learning systems when it comes to reducing CF.
## Skill Description
This skill is generated from the arXiv paper: Reducing catastrophic forgetting when evolving neural networks (1904.03178).
## How to Use
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## References
- [arXiv:1904.03178](http://arxiv.org/abs/1904.03178v1)
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