[1]魏歌. 不同物联网架构的分层标准的研究[J].计算机技术与发展,2015,25(01):221-225.
 WEI Ge. Research on Hierarchical Standards on Different Architecture of IoT[J].,2015,25(01):221-225.
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 不同物联网架构的分层标准的研究()
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《计算机技术与发展》[ISSN:1006-6977/CN:61-1281/TN]

卷:
25
期数:
2015年01期
页码:
221-225
栏目:
应用开发研究
出版日期:
2015-01-10

文章信息/Info

Title:
 Research on Hierarchical Standards on Different Architecture of IoT
文章编号:
1673-629X(2015)01-0221-05
作者:
 魏歌
 长沙学院 计算机科学与技术系
Author(s):
 WEI Ge
关键词:
 物联网架构标准三层框架泛在传感网机器到机器通信全球电子产品码组织
Keywords:
 Internet of Things(IoT)architecture standardthree layer frameworkUbiquitous Sensor Networks(USN) Machine-to-Ma-chine(M2M)electronic product code global
分类号:
TP393
文献标志码:
A
摘要:
 试图比较不同的国际标准组织的物联网架构标准间的异同来探讨整合标准的途径,以期实现全球的物联网架构标准的统一。对于ITU、ETSI和ISO/IEC的不同标准的平台、工具、调用构件等的设计要求进行了分析,并将它们的分层标准和对应的国标YD/T 2437-2012之间的关系进行了比较。结果表明,ITU、ETSI和ISO/IEC等的物联网架构标准存在与国标YD/T 2437-2012相对应的层次标准,从它们的架构中能衍生出国标的三层框架。这样一来,它们的互联与融合,既可以引导未来的物联网系统在统一架构标准下开发,又可以在一定的统一性的基础上满足不同系统的各自需求。
Abstract:
 Attempt to compare the IoT ( Internet of Things) architecture standards from different International Standard Organizations to explore an approach to integrate standards,and can also be expected to realize unification of the architecture standards of global IoT. The design requirements of ITU,ETSI and ISO/IEC for platforms,tools,invoking component and so on are analyzed,and then the relationship between their hierarchical standard and the corresponding national standard YD/T 2437-2012 is compared. The results show that there is hierarchy standard in the IoT architecture standards of ITU,ETSI and ISO/IEC corresponding to national standard YD/T 2437-2012,and from their architecture,three layer framework of national standard can be derived. As a result,their interconnection and fusion can be used both to guide the IoT system in the future can be developed in the unified architecture standards,and to satisfy the respective requirements of the different systems based on a degree of uniformity.

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 E Xu[] [],HOU Bao-ming[],BI Jia-na[],et al. Smart Agriculture Based on Internet of Things[J].,2014,24(01):164.
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 MIAO Jian-feng,GUAN You-qing. Implementation of 6 LoWPAN Neighbor Discovery Protocol in Border Routers[J].,2014,24(01):58.
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 BAO Jian-min[],WANG Kai[],BAO Chen-qi[]. A Service Buffering Mechanism Based on Unified Interface Network Communications Layer of USPIOT Platform[J].,2014,24(01):93.
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更新日期/Last Update: 2015-04-28