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Study and Application on Evaluation Model of Atmospheric Environmental Quality Based on Uncertainty Measure Theory

机译:基于不确定性测度理论的大气环境质量评价模型研究与应用

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At present, the atmospheric environmental quality became one of the problems increasingly concerned, and uncertainty measure method had been applied in many fields. The significance of atmospheric environmental quality evaluation and existing problems of evaluation methods were discussed, with attention paid to prior research results. This paper selected three atmospheric environmental pollution factors such as SO2, NO2 and PM10 as evaluation parameters to establish level-evaluating and order-arranging models of atmospheric environmental quality on the basis of information entropy and uncertainty measure theory. In the model, this paper used annual air pollution monitoring data in Xinxiang city during 2006 to 2010 to build uncertainty measure function, adopted information entropy theory to give the weight of index and used credible degree recognition criterion to judge atmospheric environmental quality level and order. The example analysis shows that it is reasonable and has significance for the evaluation of atmospheric environment quality in the future.
机译:目前,大气环境质量已成为人们日益关注的问题之一,不确定性测量方法已在许多领域得到应用。讨论了大气环境质量评价的意义和评价方法存在的问题,并重点关注了以往的研究成果。本文以信息熵和不确定性测度理论为基础,选择SO2,NO2和PM10等三种大气环境污染因子作为评价参数,建立了大气环境质量水平评价和排序模型。在该模型中,本文利用新乡市2006年至2010年的年度空气污染监测数据建立不确定性测度函数,采用信息熵理论给出指标的权重,并采用可信度识别标准来判断大气环境质量水平和秩序。实例分析表明,该方法是合理的,对未来大气环境质量评价具有重要意义。

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