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支持大属性集且计算可外包的属性基签名方案
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作者 张应辉 贺江勇 《北京电子科技学院学报》 2021年第4期1-11,共11页
在移动医疗场景中,利用属性基签名技术可以保证电子医疗数据的安全共享。然而,普通的属性基签名方案仅支持小属性集,在系统初始化阶段需要预先设定属性集空间的大小,这导致系统运行变得复杂。此外,现有支持大属性集的属性基签名方案在... 在移动医疗场景中,利用属性基签名技术可以保证电子医疗数据的安全共享。然而,普通的属性基签名方案仅支持小属性集,在系统初始化阶段需要预先设定属性集空间的大小,这导致系统运行变得复杂。此外,现有支持大属性集的属性基签名方案在签名阶段又存在大量的计算开销。针对以上不足,提出了一种支持大属性集且计算可外包的属性基签名方案。首先,该方案支持大属性集,有效避免了预先设定属性集空间大小的缺陷。其次,该方案将签名过程中的大量计算进行外包,并且对外包签名提供了检测机制,避免了云服务器对部分签名的伪造。另外,该方案采用区块链与云服务器结合的链上链下存储方式对电子医疗数据进行存储,极大地便利了电子医疗数据的安全存储与共享。安全性分析和实验结果表明,该方案在保证外包签名安全性的前提下提高了系统的效率。 展开更多
关键词 属性基签名 大属性集 计算外包 外包检测 安全共享
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Effect of additives on growth of ferronickel grains and metal-slag separation behavior 被引量:1
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作者 Dong-lai MA Jian-bo ZHAO +4 位作者 Qing-qing HU Xue-ming LÜ Yang YOU Zhi-xiong YOU Xue-wei LÜ 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第10期3459-3468,共10页
Na_(2)S,Na_(2)CO_(3),FeO,FeS and carbon were used to regulate the properties of slag or metal fractions,and their effects on metal growth and metal–slag separation behavior were investigated.The growth of ferronickel... Na_(2)S,Na_(2)CO_(3),FeO,FeS and carbon were used to regulate the properties of slag or metal fractions,and their effects on metal growth and metal–slag separation behavior were investigated.The growth of ferronickel grains can be enhanced by adding these additives,and Na_(2)S was the most effective.Na_(2)S,Na_(2)CO_(3) and FeO mainly affected the properties of slag,while carbon and FeS affected the metal fraction.The onset temperature of metal–slag separation was 1297℃ for the sample without additive,which was decreased to 1123 and 1101℃ after adding 3.30 wt.%Na_(2)S and 4.47 wt.%Na_(2)CO_(3),respectively.The onset temperature of metal–slag separation was mainly controlled by the slag fraction.The average apparent activation energy of metal grain growth was 125.32 kJ/mol without additive,and it decreased obviously after adding different additives.Na_(2)S also had the most remarkable effect on the decrease in activation energy. 展开更多
关键词 nickel laterite ore slag properties metal growth metal–slag separation kinetics
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