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Solving Dynamic Controllability Problem of Multi-Agent Plans with Uncertainty Using Mixed Integer Linear Programming

机译:使用混合整数线性规划解决多种代理计划的动态可控性问题

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Executing multi-agent missions requires managing the uncertainty about uncontrollable events. When communications are intermittent, it additionally requires for each agent to act only based on its local view of the problem, that is independently of events which are controlled or observed by the other agents. In this paper, we propose a new framework for dealing with such contexts, with a focus on mission plans involving temporal constraints. This framework, called Multi-agent Simple Temporal Network with Uncertainty (MaSTNU), is a combination between Multi-agent Simple Temporal Network (MaSTN) and Simple Temporal Network with Uncertainty (STNU). We define the dynamic controllability property for MaSTNU, and a method for computing offline valid execution strategies which are then dispatched between agents. This method is based on a mixed-integer linear programming formulation and can also be used to optimize criteria such as the temporal flexibility of multi-agent plans.
机译:执行多代理任务需要管理无法控制事件的不确定性。 当通信是间歇性的时,它还需要仅基于其局部视图来自行动作,其独立于由其他代理控制或观察到的事件。 在本文中,我们提出了一种处理此类背景的新框架,重点是涉及临时限制的特派团计划。 该框架称为多代理简单时间网络,具有不确定性(MASTNU),是多代理简单时间网络(MASTN)和具有不确定性(STNU)的简单时间网络之间的组合。 我们为Mastnu定义了动态可控性属性,以及用于计算脱机有效执行策略的方法,然后在代理之间调度。 该方法基于混合整数线性编程配方,并且还可用于优化诸如多代理计划的时间灵活性等标准。

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