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Deploying PAWS to Combat Poaching: Game-Theoretic Patrolling in Areas with Complex Terrain (Demonstration)

机译:部署爪子以打击偷猎:在具有复杂地形的地区的游戏 - 理论巡逻(示范)

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The conservation of key wildlife species such as tigers and elephants are threatened by poaching activities. In many conservation areas, foot patrols are conducted to prevent poaching but they may not be well-planned to make the best use of the limited patrolling resources. While prior work has introduced PAWS (Protection Assistant for Wildlife Security) as a game-theoretic decision aid to design effective foot patrol strategies to protect wildlife, the patrol routes generated by PAWS may be difficult to follow in areas with complex terrain. Subsequent research has worked on the significant evolution of PAWS, from an emerging application to a regularly deployed software. A key advance of the deployed version of PAWS is that it incorporates the complex terrain information and generates a strategy consisting of easy-to-follow routes. In this demonstration, we provide 1) a video introducing the PAWS system; 2) an interactive visualization of the patrol routes generated by PAWS in an example area with complex terrain; and 3) a machine-human competition in designing patrol strategy given complex terrain and animal distribution.
机译:通过偷猎活动保护诸如老虎和大象等关键野生动物种类的保护。在许多保护区,进行脚巡逻队以防止偷猎,但它们可能无法充分计划充分利用受限的巡逻资源。虽然事先工作引入了爪子(野生动物安全保护助理)作为设计有效的脚巡逻策略来保护野生动物的游戏理论决策援助,但爪子产生的巡逻队可能很难在复杂地形的区域遵循。随后的研究已经涉及爪子的显着演变,从新兴的应用程序到经常部署的软件。爪子部署版本的关键进展是它包含复杂的地形信息,并生成一个由易于遵循的路线组成的策略。在这次演示中,我们提供1)视频引入爪子系统; 2)爪子在具有复杂地形的示例区域中由爪子产生的巡逻路线的交互式可视化; 3)设计巡逻策略的机器人类竞争给予复杂的地形和动物分布。

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