论文标题

HTN计划中的意识

Risk Awareness in HTN Planning

论文作者

Alnazer, Ebaa, Georgievski, Ilche, Aiello, Marco

论文摘要

实际的现实世界域的特征是不确定的情况,在这种情况下,行动和使用资源可能需要拥抱风险。在此类域中执行操作涉及消耗某些资源(例如时间或能量)的成本,在这些资源中,有关这些成本的知识可能从已知到完全未知的范围。在自动驾驶汽车中,由于流量等因素,行动的成本不确定。选择诉讼需要评估延迟风险,因为每条道路可能会有不可预测的拥塞。因此,这些领域不仅要求在不确定性下进行计划,而且还要求在拥抱风险的同时计划。诉诸HTN规划是一种在现实世界应用中广泛使用的计划技术时,可以观察到现有方法具有风险中立性,依靠单值行动成本而无需考虑风险。在这里,我们通过考虑预期的效用理论来增强HTN计划,并具有风险意识。我们介绍了HTN计划的一般框架,该框架允许使用概率分配行动成本的概率分布来建模风险和不确定性,我们将其定义的HTN计划定义为能够计算不同的风险态度并允许计算超出风险中立的计划的计算。我们列出,计算风险感知计划需要查找具有最高预期公用事业的计划。我们认为,HTN规划代理可以通过调整现有的HTN计划方法来解决专业风险感知的HTN计划问题,并开发一种通过允许这些代理来计算针对特定风险态度量身定制的计划来超过当前方法的方法。对两个案例研究的经验评估突出了这种方法的可行性和表现力。我们还重点介绍了开放问题,例如在HTN计划之外应用提案,涵盖建模和计划生成。

Actual real-world domains are characterised by uncertain situations in which acting and using resources may entail the embracing of risks. Performing actions in such domains involves costs of consuming some resource, such as time or energy, where the knowledge about these costs can range from known to totally unknown. In autonomous vehicles, actions have uncertain costs due to factors like traffic. Choosing an action requires assessing delay risks, as each road may have unpredictable congestion. Thus, these domains call for not only planning under uncertainty but also planning while embracing risk. Resorting to HTN planning as a widely used planning technique in real-world applications, one can observe that existing approaches assume risk neutrality, relying on single-valued action costs without considering risk. Here, we enhance HTN planning with risk awareness by considering expected utility theory. We introduce a general framework for HTN planning that allows modelling risk and uncertainty using a probability distribution of action costs upon which we define risk-aware HTN planning as being capable of accounting for the different risk attitudes and allowing the computation of plans that go beyond risk neutrality. We lay out that computing risk-aware plans requires finding plans with the highest expected utility. We argue that it is possible for HTN planning agents to solve specialised risk-aware HTN planning problems by adapting existing HTN planning approaches, and develop an approach that surpasses the expressiveness of current approaches by allowing these agents to compute plans tailored to a particular risk attitude. An empirical evaluation of two case studies highlights the feasibility and expressiveness of this approach. We also highlight open issues, such as applying the proposal beyond HTN planning, covering both modelling and plan generation.

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