基于动态优先级的配电消费物联网通信调度策略

Chunchao Hu, Wen Wang, Yu Cai, Hongli Xue, Yiqun Kang, Z. Cai
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引用次数: 1

摘要

配电与消费物联网(PD-IoT)应用数据大量接入边缘物联网网关,会造成应用数据包的积累和丢失,影响电力系统的正常运行。为此,本文提出了一种基于动态优先级的PD-IoT通信调度策略,以满足不同应用的通信需求。首先,基于应用通信值建立多优先级应用排队模型,计算边缘IoT网关处理和转发PD-IoT应用数据的平均排队时间,为应用调度提供理论依据。然后,提出了一种基于动态优先级的通信调度策略。基于应用程序剩余值密度和执行紧迫性,引入动态优先级因子,并在应用程序抢占机制下设置一个抢占阈值。最后,通过OPNET仿真验证了本文提出的通信调度策略不仅能够兼顾不同PD-IoT应用的通信需求,减少信息采集应用的处理延迟,而且在海量应用数据被访问时,能够提高整体通信的可靠性和效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Communication Scheduling Strategy for the Power Distribution and Consumption Internet of Things Based on Dynamic Priority
Massive access of the Power Distribution and Consumption Internet of Things(PD-IoT) application data to the edge IoT gateway will cause the accumulation and loss of application data packets, which will affect the normal operation of the power system. In this regard, this paper proposes a dynamic priority-based communication scheduling strategy for the PD-IoT to meet the communication needs of different applications. Firstly, a multi-priority application queuing model is established based on the application communication value, and the average queuing time of the edge IoT gateway for processing and forwarding the PD-IoT application data is calculated to provide a theoretical basis for application scheduling. Then, a communication scheduling strategy based on dynamic priority is proposed. A dynamic priority factor is introduced based on the application remaining value density and the urgency of execution, added by a preemption threshold set under the application preemption mechanism. Finally, it is verified through OPNET simulation that the communication scheduling strategy proposed in this paper can not only take into account the communication needs of different PD-IoT applications, reduce the processing delay of information collection applications, but also improve the overall reliability and efficiency of communication when massive application data is accessed.
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