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Formal methods for reasoning and uncertainty reduction in evidential grid maps

机译:证据网格图中推理和减少不确定性的形式化方法

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Information fusion is the task of combining data collected from different sources into a unified representation. Here, a main challenge is to deal with the inherent uncertainty contained in the information, such as sensor noise, conflicting information, or incomplete knowledge. In current approaches, one usually employs independence assumptions in order to reduce the complexity. Because of this, the full potential of the gathered data is often not fully exploited and the fusion may lead to additional uncertainty. In order to reduce this uncertainty, further information in form of background and expert knowledge can be utilized, which is often available for real-world scenarios. However, reasoning on this knowledge is a computational complex task. In this work, we propose a methodology which utilizes formal methods for that reasoning, which allows to relax some of the independence assumptions. We demonstrate the proposed methodology using evidential grid maps - a belief function-based environment representation, in which different kinds of uncertainty are represented explicitly. Our methodology is evaluated based on basic structures as well as on real-world data sets. The results show that the uncertainty in the maps is significantly reduced by considering dependencies among cells. (C) 2017 Elsevier Inc. All rights reserved.
机译:信息融合是将从不同来源收集的数据组合成统一表示的任务。在此,主要挑战是应对信息中包含的固有不确定性,例如传感器噪声,冲突信息或不完整的知识。在当前方法中,通常采用独立性假设以降低复杂性。因此,通常无法充分利用收集到的数据的全部潜力,并且融合可能会导致其他不确定性。为了减少这种不确定性,可以利用背景和专家知识形式的更多信息,这些信息通常可用于现实情况。但是,基于此知识进行推理是一项计算复杂的任务。在这项工作中,我们提出了一种使用形式方法进行推理的方法,可以放宽某些独立性假设。我们使用证据网格图演示了所提出的方法-一种基于信念函数的环境表示,其中明确表示了各种不确定性。我们的方法是根据基本结构以及实际数据集进行评估的。结果表明,通过考虑单元之间的依赖性,可以显着减少映射图中的不确定性。 (C)2017 Elsevier Inc.保留所有权利。

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