Compared with accurate diagnosis, the system’s selfdiagnosing capability can be greatly increased through the t/kdiagnosis strategy at most k vertexes to be mistakenly identified as faulty under the comparison model,...Compared with accurate diagnosis, the system’s selfdiagnosing capability can be greatly increased through the t/kdiagnosis strategy at most k vertexes to be mistakenly identified as faulty under the comparison model, where k is typically a small number. Based on the Preparata, Metze, and Chien(PMC)model, the n-dimensional hypercube network is proved to be t/kdiagnosable. In this paper, based on the Maeng and Malek(MM)*model, a novel t/k-fault diagnosis(1≤k≤4) algorithm of ndimensional hypercube, called t/k-MM*-DIAG, is proposed to isolate all faulty processors within the set of nodes, among which the number of fault-free nodes identified wrongly as faulty is at most k. The time complexity in our algorithm is only O(2~n n~2).展开更多
目的研究海因环氧树脂的固化行为,为绿色环保水性涂层和表面粘接剂的开发与研制提供一定的基础数据和理论指导。方法合成了一种新型海因环氧树脂,以六氢苯酐(HHPA)为固化剂,制备了海因环氧/HHPA树脂体系。采用差示扫描量热法研究其在不...目的研究海因环氧树脂的固化行为,为绿色环保水性涂层和表面粘接剂的开发与研制提供一定的基础数据和理论指导。方法合成了一种新型海因环氧树脂,以六氢苯酐(HHPA)为固化剂,制备了海因环氧/HHPA树脂体系。采用差示扫描量热法研究其在不同升温速率下的固化行为,通过Melak等效转换公式及双参数(m,n)自催化模型,分别确定海因环氧/HHPA树脂体系的固化反应机理函数和相关动力学参数,得到固化反应动力学方程。结果所制备的新型海因环氧值为0.65当量,无机氯含量为0.000 673当量,有机氯含量为0.0274当量。通过Ozawa-Flynn-Wall法和Friedman-Reich-Levi法确定了海因环氧树脂/HHPA体系的表观活化能分别为82.2、83.7 k J/mol,通过malek方程计算得到树脂体系的反应级数n=1.531,m=0.68,指前因子A=1.75×10^(10)。所建立的固化动力学方程为βdα/dT=1.75×10^(10)α^(0.68)(1-α)^(1.531)expa(-Eα/RT)。结论海因环氧树脂/HHPA固化反应按照自催化反应机理进行,并建立了海因环氧树脂的固化反应动力学模型。所确立的固化反应动力学模型计算得到的曲线与实验得到的DSC曲线吻合较好,在该研究范围内能较好地描述海因环氧树脂/HHPA体系的固化反应过程。展开更多
An interconnection network's diagnosability is an important metric for measuring its self-diagnostic capability. Permanent fault and intermittent fault are two different fault models that exist in an interconnection ...An interconnection network's diagnosability is an important metric for measuring its self-diagnostic capability. Permanent fault and intermittent fault are two different fault models that exist in an interconnection network. In this paper, we focus on the problem pertaining to the diagnosability of interconnection networks in an intermittent fault situation. First, we study a class of interconnection networks called crisp three-cycle networks, in which the Chin-number (the number of common vertices each pair of vertices share) is no more than one. Necessary and sufficient conditions are derived for the diagnosability of crisp three-cycle networks under the PMC (Preparata, Metze, and Chien) model. A simple check can show that many well-known intereonnection networks are crisp three-cycle networks. Second, we prove that an intereonnection network S is a ti-fault diagnosable system without repair if and only if its minimum in-degree is greater than ti under the BGM (Barsi, Grandoni, and Masetrini) model. Finally, we extend the necessary and sufficient conditions to determine whether an interconnection network S is ti-fault diagnosable without repair under the MM (Maeng and Malek) model from the permanent fault situation to the intermittent fault situation.展开更多
基金supported by the National Natural Science Foundation of China(61363002)
文摘Compared with accurate diagnosis, the system’s selfdiagnosing capability can be greatly increased through the t/kdiagnosis strategy at most k vertexes to be mistakenly identified as faulty under the comparison model, where k is typically a small number. Based on the Preparata, Metze, and Chien(PMC)model, the n-dimensional hypercube network is proved to be t/kdiagnosable. In this paper, based on the Maeng and Malek(MM)*model, a novel t/k-fault diagnosis(1≤k≤4) algorithm of ndimensional hypercube, called t/k-MM*-DIAG, is proposed to isolate all faulty processors within the set of nodes, among which the number of fault-free nodes identified wrongly as faulty is at most k. The time complexity in our algorithm is only O(2~n n~2).
文摘目的研究海因环氧树脂的固化行为,为绿色环保水性涂层和表面粘接剂的开发与研制提供一定的基础数据和理论指导。方法合成了一种新型海因环氧树脂,以六氢苯酐(HHPA)为固化剂,制备了海因环氧/HHPA树脂体系。采用差示扫描量热法研究其在不同升温速率下的固化行为,通过Melak等效转换公式及双参数(m,n)自催化模型,分别确定海因环氧/HHPA树脂体系的固化反应机理函数和相关动力学参数,得到固化反应动力学方程。结果所制备的新型海因环氧值为0.65当量,无机氯含量为0.000 673当量,有机氯含量为0.0274当量。通过Ozawa-Flynn-Wall法和Friedman-Reich-Levi法确定了海因环氧树脂/HHPA体系的表观活化能分别为82.2、83.7 k J/mol,通过malek方程计算得到树脂体系的反应级数n=1.531,m=0.68,指前因子A=1.75×10^(10)。所建立的固化动力学方程为βdα/dT=1.75×10^(10)α^(0.68)(1-α)^(1.531)expa(-Eα/RT)。结论海因环氧树脂/HHPA固化反应按照自催化反应机理进行,并建立了海因环氧树脂的固化反应动力学模型。所确立的固化反应动力学模型计算得到的曲线与实验得到的DSC曲线吻合较好,在该研究范围内能较好地描述海因环氧树脂/HHPA体系的固化反应过程。
文摘An interconnection network's diagnosability is an important metric for measuring its self-diagnostic capability. Permanent fault and intermittent fault are two different fault models that exist in an interconnection network. In this paper, we focus on the problem pertaining to the diagnosability of interconnection networks in an intermittent fault situation. First, we study a class of interconnection networks called crisp three-cycle networks, in which the Chin-number (the number of common vertices each pair of vertices share) is no more than one. Necessary and sufficient conditions are derived for the diagnosability of crisp three-cycle networks under the PMC (Preparata, Metze, and Chien) model. A simple check can show that many well-known intereonnection networks are crisp three-cycle networks. Second, we prove that an intereonnection network S is a ti-fault diagnosable system without repair if and only if its minimum in-degree is greater than ti under the BGM (Barsi, Grandoni, and Masetrini) model. Finally, we extend the necessary and sufficient conditions to determine whether an interconnection network S is ti-fault diagnosable without repair under the MM (Maeng and Malek) model from the permanent fault situation to the intermittent fault situation.