Memory-based involution dilemma on square lattices

Chaochao Huang, Chaoqian Wang
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Abstract

When involution affects individuals, their efforts do not augment resources but merely compete for limited resources. From entrance exams to company overtime, such efforts lead to unnecessary costs, undermining group welfare. Meanwhile, the individual advantages or collective disadvantages from this unnecessary effort may accumulate over time, such as the long-term validity of test scores. To identify the role of this memory factor, we propose a memory-based involution game model. In a more competitive environment, our findings suggest: (i) with scant social resources, increasing memory length curbs involution, (ii) with moderate resources, increasing memory length initially intensifies involution but later reduces it, and (iii) with abundant social resources, increasing memory length amplifies involution. Conversely, in a less competitive environment, involution consistently decreases with a larger memory length. Our research provides insights into mitigating involution by considering memory effects.
方阵上基于记忆的内卷困境
当内化影响个体时,他们的努力不会增加资源,而仅仅是争夺有限的资源。从入学考试到公司加班,这种努力导致了不必要的成本,损害了群体福利。与此同时,这种不必要的努力所带来的个人优势或集体劣势可能会随着时间的推移而积累,比如测试分数的长期有效性。为了确定这一记忆因素的作用,我们提出了基于记忆的对合博弈模型。在竞争更激烈的环境中,我们的研究结果表明:(1)在社会资源不足的情况下,增加记忆长度会抑制内联;(2)在社会资源适中的情况下,增加记忆长度会首先加剧内联,然后减弱内联;(3)在社会资源丰富的情况下,增加记忆长度会放大内联。相反,在竞争不那么激烈的环境中,随着记忆长度的增加,内化程度会持续下降。我们的研究提供了通过考虑记忆效应来减轻退化的见解。
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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