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DEVELOPMENT OF AN AUTOMATED TRACKING SYSTEM OF TAGGED WILD ANIMALS

机译:制定标记野生动物的自动跟踪系统

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The objective of this study is to develop a tracking algorithm which would allow a biologist to locate tagged animals using an unmanned aerial vehicle. The algorithm is developed to track the red wolves in a wildlife refuge in North Carolina. The red wolf is an endangered species and there are about a hundred of them living in the wild. For tracking purposes, each animal is outfitted with a collar containing a radio transmitter which emits a signal of a specific frequency over a given range. Using transmitter signal range, we discretize the refuge terrain map and develop a suboptimal greedy algorithm to search for the probabilistic targets striving to minimize the expected traveling time. To reduce the computational complexity, we consider a two-layered approach to the search problem. At the top level, the algorithm chooses the pack sectors as targets and, at the lower level, employs a local policy to travel between the discrete sensing locations. Using the animal behavior model provided by the wildlife biologists, we develop the probability rules to update the predicted target locations given the location of already found wolves. Finally, we present the results of a numerical simulation.
机译:本研究的目的是开发一种跟踪算法,该跟踪算法将允许生物学家使用无人驾驶飞行器定位标记的动物。开发了该算法以跟踪北卡罗来纳州野生动物避难中的红色狼。红狼是一种濒临灭绝的物种,其中大约有一百个生活在野外。为了跟踪目的,每个动物配备有包含无线电发射器的套环,其在给定范围内发射特定频率的信号。使用变送器信号范围,我们将避难所地形映射分开,并开发次优贪婪算法,以搜索追究预期行驶时间的概率目标。为了降低计算复杂性,我们考虑了一个双层的搜索问题方法。在顶级,该算法将包装扇区选择为目标,并且在较低级别中采用本地策略在离散传感位置之间旅行。使用野生动物生物学家提供的动物行为模型,我们开发了在已经找到狼群的位置,我们开发更新预测目标位置的概率规则。最后,我们介绍了数值模拟的结果。

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