表明规范遵从性的计算计划

Alban Grastien, Claire Benn, S. Thiébaux
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引用次数: 2

摘要

越来越多的人接受代理人必须以一种对道德考虑敏感的方式行事。这些考虑已被兑现为约束,例如某些操作是允许的,而其他操作是不允许的。在本文中,我们声称,除了只执行那些允许的行为之外,代理应该只执行那些“明确”允许的行为。通过这样做,他们发出了遵守规范的信号:他们传达了他们对规范约束的理解和遵守的承诺。在这个意义上,那些成功发出遵从信号的行动方案(或计划),我们称之为“可接受的”。本文讨论的问题是如何计算指示遵从性的计划,也就是说,如何找到既可接受又允许的计划。我们通过识别这些计划来做到这一点,如果一个观察者只看到其执行的一部分,那么观察者会推断制定的计划是允许的。本文给出了人工智能规划领域的符合性信令的正式定义,描述了计算符合性信令计划的算法,提供了初步的实验结果,并讨论了可能的改进。在行为人受到部分观察的情况下,发出遵守的信号对于沟通、协调和合作至关重要。因此,同样重要的是,要解决计算问题,找到那些计划的信号遵从。这就是这篇论文所做的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computing Plans that Signal Normative Compliance
There has been increasing acceptance that agents must act in a way that is sensitive to ethical considerations. These considerations have been cashed out as constraints, such that some actions are permissible, while others are impermissible. In this paper, we claim that, in addition to only performing those actions that are permissible, agents should only perform those courses of action that are _unambiguously_ permissible. By doing so they signal normative compliance: they communicate their understanding of, and commitment to abiding by, the normative constraints in play. Those courses of action (or plans) that succeed in signalling compliance in this sense, we term 'acceptable'. The problem this paper addresses is how to compute plans that signal compliance, that is, how to find plans that are acceptable as well as permissible. We do this by identifying those plans such that, were an observer to see only part of its execution, that observer would infer the plan enacted was permissible. This paper provides a formal definition of compliance signalling within the domain of AI planning, describes an algorithm for computing compliance signalling plans, provides preliminary experimental results and discusses possible improvements. The signalling of compliance is vital for communication, coordination and cooperation in situations where the agent is partially observed. It is equally vital, therefore, to solve the computational problem of finding those plans that signal compliance. This is what this paper does.
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