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Data fusion and sensor selection from imperfect sources with regards to the operating environment

机译:关于操作环境,从不完美来源获取数据融合和传感器选择

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Purpose - The purpose of this paper is to extend the work of fusing sensors with a Bayesian method to incorporate the sensor's reliability with regard to their operating environment. The results are then to be used with the expected decision formula, conditional entropy and mutual information for suboptimally selecting which types of sensors should be fused where there are operational constraints. Design/methodology/approach - The approach is an extension of previous work incorporating an environment parameter. The expected decision formula then forms the basis for sensor selection. Findings - The author found that the performance of the sensors is correlated to the environment of operation, given that the likelihood of error will be higher in a difficult terrain than would otherwise be the case. However, the author also shows the sensors for fusion will vary if the author knows specifically which terrain the sensors will be operating in. Research limitations/implications - The author notes that in order for this technique to be effective, a proper understanding of the limitations of the sensors, possible terrain types and targets have to be assumed. Practical implications - The practical implication of this work is the ability to assess the performance of fused sensors according to the environment or terrain they might be operating under, thus providing a greater level of sensitivity than would otherwise be the case. Originality/value - The author has extended previous ideas on sensor fusion from imprecise and uncertain sources using a Bayesian technique, as well as developed techniques regarding which sensors should be chosen for fusion given payload or other constraints.
机译:目的-本文的目的是通过贝叶斯方法扩展融合传感器的工作,以结合传感器在其工作环境方面的可靠性。然后将结果与预期的决策公式,条件熵和互信息一起使用,以便在存在操作限制的情况下亚最佳选择应该融合哪些类型的传感器。设计/方法/方法-该方法是先前工作的结合环境参数的扩展。然后,预期的决策公式将构成传感器选择的基础。发现-作者发现,传感器的性能与操作环境相关,因为在困难的地形中错误的可能性将比其他情况更高。但是,作者还显示,如果作者明确知道传感器将在哪个地形上运行,则融合传感器也会有所不同。研究局限性/含义-作者指出,为了使该技术有效,必须对局限性有适当的了解在传感器中,必须假设可能的地形类型和目标。实际意义-这项工作的实际意义是能够根据融合传感器的工作环境或地形评估其性能,从而提供比其他情况更高的灵敏度。原创性/价值-作者使用贝叶斯技术从不精确和不确定的来源扩展了关于传感器融合的先前想法,以及针对给定有效载荷或其他约束条件应选择哪种传感器进行融合的发达技术。

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