SCADA低压智能电网配电系统中新型Zigbee/IEEE802.15.4 MAC协议的建模

Hikma Shabani, M. Ahmed, Sheroz Khan, S. Hameed, M. H. Habaebi
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引用次数: 1

摘要

数据完整性和/或可用性的损失可能会对电力公司的核心业务产生不同的影响。监控和数据采集(SCADA)系统是一种几乎实时收集和分析数据的计算机系统,用于监控目的。SCADA是遥测和数据采集的结合。因此,通信在SCADA系统中起着核心作用。然而,使用无线传感器网络(WSN)可以产生比目前使用的有线传感器更灵活和强大的保护场景。Zigbee/IEEE802.15.4具有低部署成本、低功耗、低数据速率、短距离、简单和免费许可频谱等优点,是有前途的无线传感器网络标准之一。虽然针对大覆盖范围的多跳网状网络采用信标使能模式进行节能操作,但IEEE802.15.4标准没有提供任何机制来支持多跳网状网络中的信标使能模式。因此,为了提供实时数据交换,从而预测实时系统控制,本文对SCADA系统的新型Zigbee/IEEE802.15.4 MAC协议进行了建模。利用NS-2仿真对协议性能进行了评估,初步结果令人鼓舞。
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Modeling of Novel Zigbee/IEEE802.15.4 MAC Protocol for SCADA Low Voltage Smart Grid Distribution Systems
The loss of the integrity and/or availability of data has the potential to diversely affect power utility core operations. Supervisory Control and Data Acquisition (SCADA) system is a computer system for collecting and analyzing data in almost real-time fashion for monitoring purposes. SCADA refers to the combination of telemetry and data acquisition. Communication plays, thus, a core role in SCADA systems. The use of wireless sensor network (WSN) can, however, lead to a more flexible and powerful protection scenarios than the current used wired sensor. Merit to Zigbee/IEEE802.15.4 as one of the promising WSN standards due to its low cost of deployment, low power, low data rate, short range, simplicity and free licensed spectrum. While a beacon-enabled mode is adopted for energy efficiency operations with a multi-hop mesh network built up for large coverage, IEEE802.15.4 standard does not provide any mechanisms for a beacon-enabled mode in multi-hop mesh networks. Hence, in order to provide a real-time data exchange and thus, predict a real-time system control, a Novel Zigbee/IEEE802.15.4 MAC Protocol for SCADA system is modeled in this paper. The protocol performance is evaluated using NS-2 Simulation and the preliminary results are encouraging.
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