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首页> 外文期刊>Internet of Things Journal, IEEE >Toward Emulation-Based Performance Assessment of Constrained Application Protocol in Dynamic Networks
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Toward Emulation-Based Performance Assessment of Constrained Application Protocol in Dynamic Networks

机译:动态网络中基于仿真的约束应用协议性能评估

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摘要

The Internet of Things (IoT) has emerged as the key networking paradigm for supporting the connectivity of massively distributed objects and numerous simultaneous applications. The constrained application protocol (CoAP) is designed to meet the requirements for IoT data transmission among constrained nodes. The lean design of CoAP enables it to additionally meet the needs of the data transmission in dynamic network environments. In this paper, we conduct an emulation-based quantitative performance assessment of CoAP in comparison with HTTP, assessing data transmission based on key characteristics of dynamic network environments and the designed scenarios. We also designed scenarios and evaluate the performance of investigated protocols using real-world IoT datasets. Our experimental results demonstrate that CoAP performs better than HTTP for data transmission in the dynamic network environments with respect to delivery rate, delay, and overhead. In addition, we analyze the impact of features in dynamic network environments on the performance of data transmission protocols with respect to success rate, delay and overhead, as well as discuss some further extensions for future research.
机译:物联网(IoT)已成为支持大规模分布对象和众多同时应用程序之间连接的关键网络范例。约束应用协议(CoAP)旨在满足约束节点之间IoT数据传输的要求。 CoAP的精益设计使其能够额外满足动态网络环境中数据传输的需求。在本文中,我们与HTTP进行了基于仿真的CoAP定量性能评估,并根据动态网络环境的关键特征和设计方案评估了数据传输。我们还设计了方案,并使用实际的IoT数据集评估了研究协议的性能。我们的实验结果表明,对于动态网络环境中的数据传输,CoAP在传输速率,延迟和开销方面的性能均优于HTTP。此外,我们分析了动态网络环境中的功能对数据传输协议性能的影响,包括成功率,延迟和开销,并讨论了一些进一步的扩展以供将来研究。

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