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System design and resource analysis for persistent robotic presence with multiple refueling stations

机译:具有多个加油站的持久机器人存在的系统设计和资源分析

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Despite the capabilities of unmanned aerial vehicles (UAVs), it is not possible to conduct long-term missions with a just few UAVs due to fuel restrictions. This requires a system that includes multiple UAVs and automated recharging stations for an automatic and persistent service. In order to construct a persistent presence system such as local surveillance and monitoring, it is important to determine the design of the mission and the number of resources required. In this paper, a system consisting of multiple target areas and multiple stations is considered. There are two types of stations: refueling and main stations for maintenance. UAVs can travel further using the refueling stations. A decision-free Petri net model for persistency is developed for cyclic paths including multiple immobile targets and stations. From the Petri net model, we derive a closed-form function for the minimum number of resources in the persistent system. A mathematical model that has the objective function derived from the Petri net is developed. To resolve the computational issue, a genetic algorithm (GA) is used to solve the problem. As the result, the minimum number of resources required and the mission path are derived.
机译:尽管无人飞行器(UAV)具有能力,但由于燃料限制,仅使用少量无人飞行器就无法执行长期任务。这需要一个系统,该系统包括多个UAV和自动充电站,以提供自动和持久的服务。为了构建一个持久存在系统,例如本地监视和监视,确定任务的设计和所需的资源数量非常重要。在本文中,考虑了一个由多个目标区域和多个站点组成的系统。加油站有两种类型:加油站和主要维护站。无人机可以使用加油站继续行驶。针对包含多个固定目标和站点的循环路径,开发了用于持久性的无决策Petri网模型。从Petri网络模型中,我们为持久性系统中的最少资源导出了一个封闭形式的函数。建立了具有从Petri网导出的目标函数的数学模型。为了解决计算问题,使用遗传算法(GA)来解决该问题。结果,得出了所需的最少资源和任务路径。

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