A novel scheduling technique for Smart Grid data on LTE networks

Chalakorn Karupongsiri, Md. Farhad Hossain, K. Munasinghe, A. Jamalipour
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引用次数: 2

Abstract

Smart Grid (SG) is envisioned as the future of the electricity delivery system, which can be intelligently monitored, and operated via communication links. The Smart Meter (SM), one of the key elements of the SG, identifies power consumption and communicates with the control center. The long term evolution (LTE) network has become an attractive candidate for SG communications. Regardless of LTE's growing popularity as a means for transporting SG data, it is mainly designed for high speed and high capacity data traffic such as video streaming and internet traffic. Because of the different set of Quality-of-Service (QoS) considered for those applications compared to those required for the SG traffic, LTE is unable to guarantee the delivery of SG data with required QoS levels. As a result, existing scheduling mechanisms may not be able to efficiently handle SM traffic at a heavily loaded eNode-B. Especially, there may not be sufficient resource blocks (RBs) available at an eNode-B for SM traffic. Therefore, in this paper, we introduce a novel scheduling technique for prioritizing SM data for an LTE eNode-B. Further, two RBs are reserved for SG data and each SM is polled periodically by the proposed method. Results indicate that since a guaranteed connectivity could be provided to all SMs, the latency related to SG data is reduced.
一种新的LTE网络智能电网数据调度技术
智能电网(SG)被设想为未来的电力输送系统,可以通过通信链路进行智能监控和操作。智能电表(Smart Meter, SM)是SG的关键部件之一,负责识别功耗并与控制中心进行通信。长期演进(LTE)网络已成为有吸引力的SG通信候选网络。尽管LTE作为一种传输SG数据的手段越来越受欢迎,但它主要是为高速和高容量数据流量(如视频流和互联网流量)而设计的。由于为这些应用程序考虑的服务质量(QoS)集与SG流量所需的服务质量(QoS)集不同,因此LTE无法保证具有所需QoS级别的SG数据交付。因此,现有的调度机制可能无法在负载沉重的eNode-B上有效地处理SM流量。特别是,eNode-B上可能没有足够的资源块(RBs)用于SM流量。因此,在本文中,我们介绍了一种新的调度技术,用于LTE eNode-B的SM数据优先级。此外,为SG数据保留两个RBs,并通过所提出的方法定期轮询每个SM。结果表明,由于可以向所有SMs提供有保证的连接,因此减少了与SG数据相关的延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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