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基于一致分布的时间Petri网模型 被引量:3
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作者 潘理 丁志军 陈刚 《计算机学报》 EI CSCD 北大核心 2010年第5期900-907,共8页
时间Petri网的现有分析理论主要关注基于区间端点的计算和推理,缺乏对实施区间内不确定性的定量描述,不利于时间Petri网进行系统性能评价和动态模拟实现.为了解决这一问题,提出基于一致分布的时间Petri网模型.首先给出变迁实施概率和变... 时间Petri网的现有分析理论主要关注基于区间端点的计算和推理,缺乏对实施区间内不确定性的定量描述,不利于时间Petri网进行系统性能评价和动态模拟实现.为了解决这一问题,提出基于一致分布的时间Petri网模型.首先给出变迁实施概率和变迁序列实施概率的计算方法;然后引入概率条件到状态类,用于构造时间Petri网的概率可达类树;最后给出动态模拟实验,检验理论方法的正确性. 展开更多
关键词 时间PETRI网 一致分布 实施概率 状态类方法 模拟
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柔性制造系统的时间Petri网建模与分析
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作者 潘理 郭观七 +1 位作者 欧阳竟成 李武 《计算技术与自动化》 2013年第2期105-108,共4页
时间Petri网是描述和验证实时系统最常用的形式模型之一。建立基于时间Petri网的典型柔性制造系统模型,利用状态类分析方法,定量计算所有可行调度及其执行时间,进而获得最优调度,为复杂柔性制造系统的建模与调度提供有效的模型支持。
关键词 时间PETRI网 状态类方法 柔性制造系统 建模与调度
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Application of different clustering approaches to hydroclimatological catchment regionalization in mountainous regions, a case study in Utah State 被引量:1
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作者 Elnaz SHARGHI Vahid NOURANI +1 位作者 Saeed SOLEIMANI Fahreddin SADIKOGLU 《Journal of Mountain Science》 SCIE CSCD 2018年第3期461-484,共24页
With respect to the different hydrological responses of catchments, even the adjacent ones, in mountainous regions, there are a great number of motivations for classifying them into homogeneous clusters. These motivat... With respect to the different hydrological responses of catchments, even the adjacent ones, in mountainous regions, there are a great number of motivations for classifying them into homogeneous clusters. These motivations include prediction in ungauged basins(PUB), model parameterization, understanding the potential impact of environmental changes, transferring information from gauged catchments to the ungauged ones. The present study investigated the similarity of catchments through the hydro-climatological pure time-series of a 14-year period from 2001 to 2015. Data sets encompass more than 13,000 month-station streamflow, rainfall, and temperature data obtained from 27 catchments in Utah State as one of the eight mountainous states of the USA. The identification, analysis, and interpretation of homogeneous catchments were investigated by applying the four approaches ofclustering, K-means, Ward, and SOM(Self-Organized Map) and a newly proposed Wavelet-Entropy-based(WE-SOM) clustering method. By using two clustering evaluation criteria, 3, 5, and 6 clusters were determined as the best numbers of clusters, depending on the method employed, where each cluster represents different hydro-climatological behaviors. Despite the absence of geographic characteristics in input data matrix, the results indicated a regionalization in agreement with topographic characteristics. Considering the dependency of the hydrological behavior of catchments on the physiographic field aspects and characteristics, WE-SOM method demonstrated a more acceptable performance, compared to the other three conventional clustering methods, by providing more clusters. WE-SOM appears to be a promising approach in catchment clustering. It preserves the topological structure of data which can, as a result, be proofed in a greater number of clusters by dividing data into higher numbers of distinct clusters withsimilar altitudes of catchments in each cluster. The results showed the aptitude of wavelets to quantify the time-based variability of temperature, rainfall and streamflow, in the way contributing to the regionalization of diverse catchments. 展开更多
关键词 Catchment clustering K-means WARD Self-Organized Map Wavelet–Entropy UTAH
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