物联网中基于令牌访问控制的聚合传感器负载提交模型

Mohammed Amir, P. Pillai, Yim-Fun Hu
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引用次数: 1

摘要

物联网(WoT)可以看作是新兴的物联网(IoT)和云计算范式的融合。快速变化、高度不稳定和异构的数据流量是WoT的一个特点。因此,捕获、处理、存储和交换大量数据是该环境中的一个关键需求。传感设备和传感数据是WoT的关键资源。因此,在这个高度动态和要求苛刻的环境中使用的访问控制机制需要得到增强,以减少捕获和交换与这些底层资源相关的数据的端到端延迟。虽然之前有许多研究在算法层面比较了访问控制机制的优缺点,但很少有研究对这些访问控制机制在数据捕获、处理和存储的不同数据处理过程中使用时的性能进行详细的比较。本研究建立在先前关于基于令牌的访问控制机制的工作基础上,并比较了在WoT中用于处理传感设备和数据的两种不同方法。结果表明,在减少往返响应时间方面,聚合数据提交方法的效率比串行负载提交过程高700%左右。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aggregated Sensor Payload Submission Model for Token-Based Access Control in the Web of Things
Web of Things (WoT) can be considered as a merger of newly emerging paradigms of Internet of Things (IoT) and cloud computing. Rapidly varying, highly volatile and heterogeneous data traffic is a characteristic of the WoT. Hence, the capture, processing, storage and exchange of huge volumes of data is a key requirement in this environment. The crucial resources in the WoT are the sensing devices and the sensing data. Consequently, access control mechanisms employed in this highly dynamic and demanding environment need to be enhanced so as to reduce the end-to-end latency for capturing and exchanging data pertaining to these underlying resources. While there are many previous studies comparing the advantages and disadvantages of access control mechanisms at the algorithm level, vary few of these provide any detailed comparison the performance of these access control mechanisms when used for different data handling procedures in the context of data capture, processing and storage. This study builds on previous work on token-based access control mechanisms and presents a comparison of two different approaches used for handling sensing devices and data in the WoT. It is shown that the aggregated data submission approach is around 700% more efficient than the serial payload submission procedure in reducing the round-trip response time.
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