• 中国精品科技期刊
  • CCF推荐A类中文期刊
  • 计算领域高质量科技期刊T1类
Advanced Search
Shi Yahu, Shi Hailong, Cui Li. EasiDARM: Distributed Based Adaptive Register Method for Internet of Things[J]. Journal of Computer Research and Development, 2019, 56(3): 453-466. DOI: 10.7544/issn1000-1239.2019.20170667
Citation: Shi Yahu, Shi Hailong, Cui Li. EasiDARM: Distributed Based Adaptive Register Method for Internet of Things[J]. Journal of Computer Research and Development, 2019, 56(3): 453-466. DOI: 10.7544/issn1000-1239.2019.20170667

EasiDARM: Distributed Based Adaptive Register Method for Internet of Things

More Information
  • Published Date: February 28, 2019
  • With the perfecting and practicability of the access protocols of the Internet of things (IoT), it is becoming a mainstream architecture to connect devices to cloud platforms for support of real-time access. Considering the dynamic nature of IoT devices and networks, we must make the devices register on the platforms periodically to ensure real-time access between the devices and the platforms. However, existing register methods cost much time and consume a lot of resources on devices, Internet and platforms; and what’s more, the platforms will be overload when many devices or networks are dynamic. In this paper, we present a distributed based adaptive register method (EasiDARM) to reduce the costs of resources and time. By using multiple devices to complete the measurement of network address translation (NAT) timeout which is complex and time-consuming, and sharing the result of measurement among the devices, EasiDARM accelerates the processes of the measurement and self-adaption. The process of measurement is divided into fast update (FU) and fast converge (FC) stage, EasiDARM assigns and probes the candidate intervals with exponential growth during the FU stage to extend the register interval rapidly, and with linear growth during the FC stage to converge the measurement quickly. Through experiments show that compared with the traditional adaptive register method, EasiDARM can reduce 46% of time, 46% of consumption on devices and 53% of consumption on Internet and platforms in the process of measurement, and cut 36% of instantaneous consumption on platforms.
  • Related Articles

    [1]He Xianmin, Li Maoxi, He Yanqing. Siamese BERT-Networks Based Classification Mapping of Scientific and Technological Literature[J]. Journal of Computer Research and Development, 2021, 58(8): 1751-1760. DOI: 10.7544/issn1000-1239.2021.20210323
    [2]Liu Zihao, Zhang Bin, Zhu Ning, Tang Huilin. Adaptive App-DDoS Detection Method Based on Improved AP Algorithm[J]. Journal of Computer Research and Development, 2018, 55(6): 1236-1246. DOI: 10.7544/issn1000-1239.2018.20170124
    [3]Zhou Quanbiao, Zhang Xingjun, Liang Ningjing, Huo Wenjie, Dong Xiaoshe. FTL Address Mapping Method Based on Mapping Entry Inter-Reference Recency[J]. Journal of Computer Research and Development, 2018, 55(5): 1065-1077. DOI: 10.7544/issn1000-1239.2018.20170254
    [4]Wang Yizhuo, Zuo Qi, Ji Weixing, Wang Xiaojun, Shi Feng. Memory-Aware Incremental Mapping of Applications to MPSoC[J]. Journal of Computer Research and Development, 2015, 52(5): 1198-1209. DOI: 10.7544/issn1000-1239.2015.20131960
    [5]Zhu Hong, Ding Shifei, Xu Xinzheng. An AP Clustering Algorithm of Fine-Grain Parallelism Based on Improved Attribute Reduction[J]. Journal of Computer Research and Development, 2012, 49(12): 2638-2644.
    [6]Zuo Yayao, Tang Yong, Shu Zhongmei. Subtraction Operation between Temporal Points with Granularities Based on Granularity Hierarchy Mapping[J]. Journal of Computer Research and Development, 2012, 49(11): 2320-2327.
    [7]Zhu Sifeng, Liu Fang, Chai Zhengyi, Qi Yutao. Immune-Computing-Based Location Planning of Base Station and Relay Station in IEEE 802.16j Network[J]. Journal of Computer Research and Development, 2012, 49(8): 1649-1654.
    [8]Li Xiaoling, Guo Changguo, Li Xiaoyong, Wang Huaimin. A Constraint Optimization Based Mapping Method for Virtual Network[J]. Journal of Computer Research and Development, 2012, 49(8): 1601-1610.
    [9]Cao Chunjie, Yang Chao, Ma Jianfeng, Zhu Jianming. An Authentication Protocol for Station Roaming in WLAN Mesh[J]. Journal of Computer Research and Development, 2009, 46(7): 1102-1109.
    [10]Yang Renzhong, Hou Zifeng, Li Jingxia. A Resource Reservation Scheme for PCF Handoff Station in WLAN[J]. Journal of Computer Research and Development, 2005, 42(11): 1962-1968.
  • Cited by

    Periodical cited type(9)

    1. 傅培旺 ,丁红发 ,刘海 ,蒋合领 ,唐明丽 ,于莹莹 . 基于本地差分隐私的分布式图统计采集算法. 计算机研究与发展. 2024(07): 1643-1669 . 本站查看
    2. 李可佳,胡学先,陈越,杨鸿健,徐阳,刘扬. 基于主成分分析和函数机制的差分隐私线性回归算法. 计算机科学. 2023(08): 342-351 .
    3. 孙涛,李晓会,李晗,赵雪. 一种面向图数据的AWG-LDP局部差分隐私保护算法研究. 计算机应用研究. 2023(08): 2467-2472+2500 .
    4. 丁红发,傅培旺,彭长根,龙士工,吴宁博. 混洗差分隐私保护的度分布直方图发布算法. 西安电子科技大学学报. 2023(06): 219-236 .
    5. 李恒春,樊伟麟,孟宁,兰秋军. 符合差分隐私的流数据统计直方图发布. 湘潭大学学报(自然科学版). 2022(02): 72-79 .
    6. 贾俊杰,陈慧,马慧芳,牟玉祥. 差分隐私的查询一致性约束研究. 计算机工程与科学. 2020(01): 71-79 .
    7. 彭长根,赵园园,樊玫玫. 基于最大信息系数的主成分分析差分隐私数据发布算法. 信息网络安全. 2020(02): 37-48 .
    8. 丰霏,陈天翔. “推测信息”的权利属性及其法律规制. 人权研究(辑刊). 2020(01): 195-222+569 .
    9. 林子杰,张宇轩,刘文芬,胡学先. 点差分隐私下基于度序列的图生成模型. 信息工程大学学报. 2020(06): 680-688 .

    Other cited types(16)

Catalog

    Article views (1023) PDF downloads (326) Cited by(25)

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return