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智能配电网量测信息变断面柔性压缩新算法 被引量:10
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作者 屈志坚 郭亮 +2 位作者 刘明光 陈秋琳 蒋俊俊 《中国电机工程学报》 EI CSCD 北大核心 2013年第19期191-199,3,共9页
针对智能配电网量测点多、运行变化快,容易造成海量大数据集信息,使调度产生处理延迟、响应慢的问题,提出了融合变断面压缩存取和分布式集群无损压缩的柔性压缩新算法。综合运用量测点元采样、阀值与时限控制技巧,实现变断面压缩存取,... 针对智能配电网量测点多、运行变化快,容易造成海量大数据集信息,使调度产生处理延迟、响应慢的问题,提出了融合变断面压缩存取和分布式集群无损压缩的柔性压缩新算法。综合运用量测点元采样、阀值与时限控制技巧,实现变断面压缩存取,通过构建Hadoop云集群平台,以变断面量测数据作为集群压缩输入对象,利用Map/Reduce云计算引擎实现分布式无损集群压缩。以西陇海线电力调度自动化系统为例进行研究,结果表明:变断面压缩法使量测值存取压缩率达到约91%,集群无损压缩法使变断面存储的信息量进一步压缩75%左右,具有显著的柔性技术特征,为智能配电网量测大数据集信息研究提供了一种无损压缩新方法。 展开更多
关键词 智能配电网 变断面压缩 集群压缩 无损压缩 柔性模型
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Compressive response and microstructural evolution of in-situ TiB_(2)particle-reinforced 7075 aluminum matrix composite 被引量:12
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作者 Han WANG Hai-ming ZHANG +2 位作者 Zhen-shan CUI Zhe CHEN Dong CHEN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第5期1235-1248,共14页
The hot forming behavior,failure mechanism,and microstructure evolution of in-situ TiB_(2)particle-reinforced 7075 aluminum matrix composite were investigated by isothermal compression test under different deformation... The hot forming behavior,failure mechanism,and microstructure evolution of in-situ TiB_(2)particle-reinforced 7075 aluminum matrix composite were investigated by isothermal compression test under different deformation conditions of deformation temperatures of 300−450℃ and strain rates of 0.001^(−1)s^(−1).The results demonstrate that the failure behavior of the composite exhibits both particle fracture and interface debonding at low temperature and high strain rate,and dimple rupture of the matrix at high temperature and low strain rate.Full dynamic recrystallization,which improves the composite formability,occurs under conditions of high temperature(450℃)and low strain rate(0.001 s^(−1));the grain size of the matrix after hot compression was significantly smaller than that of traditional 7075Al and ex-situ particle reinforced 7075Al matrix composite.Based on the flow stress curves,a constitutive model describing the relationship of the flow stress,true strain,strain rate and temperature was proposed.Furthermore,the processing maps based on both the dynamic material modeling(DMM)and modified DMM(MDMM)were established to analyze flow instability domain of the composite and optimize hot forming processing parameters.The optimum processing domain was determined at temperatures of 425−450℃ and strain rates of 0.001−0.01 s^(−1),in which the fine grain microstructure can be gained and particle crack and interface debonding can be avoided. 展开更多
关键词 in-situ TiB2 particles aluminum matrix composite hot compression deformation particle fracture interface debonding dynamic recrystallization
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