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Big Data acquired by Internet of Things-enabled industrial multichannel wireless sensors networks for active monitoring and control in the smart grid Industry 4.0

机译:通过互联网上互联网的工业多通道无线传感器网络获取的大数据用于智能电网行业中的主动监控和控制4.0

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摘要

Smart Grid Industry 4.0 (SGI4.0) defines a new paradigm to provide high-quality electricity at a low cost by reacting quickly and effectively to changing energy demands in the highly volatile global markets. However, in SGI4.0, the reliable and efficient gathering and transmission of the observed information from the Internet of Things (IoT)-enabled Cyber-physical systems, such as sensors located in remote places to the control center is the biggest challenge for the Industrial Multichannel Wireless Sensors Networks (IMWSNs). This is due to the harsh nature of the smart grid environment that causes high noise, signal fading, multipath effects, heat, and electromagnetic interference, which reduces the transmission quality and trigger errors in the IMWSNs. Thus, an efficient monitoring and real-time control of unexpected changes in the power generation and distribution processes is essential to guarantee the quality of service (QoS) requirements in the smart grid. In this context, this paper describes the dataset contains measurements acquired by the IMWSNs during events monitoring and control in the smart grid. This work provides an updated detail comparison of our proposed work, including channel detection, channel assignment, and packets forwarding algorithms, collectively called CARP [1] with existing G-RPL [2] and EQSHC [3] schemes in the smart grid. The experimental outcomes show that the dataset and is useful for the design, development, testing, and validation of algorithms for real-time events monitoring and control applications in the smart grid.
机译:智能电网行业4.0(SGI4.0)定义了一种新的范式,以通过快速有效地对高挥发的全球市场的能源需求进行反应,以低成本提供高质量的电力。但是,在SGI4.0中,来自物联网(IOT)的网络物理系统(例如位于控制中心的远程位置的传感器)的可靠和高效的收集和传输是最偏远的传感器是最大的挑战工业多通道无线传感器网络(IMWSN)。这是由于智能电网环境的苛刻性,导致高噪声,信号衰落,多路径效应,热量和电磁干扰,这降低了IMWSN中的传输质量和触发错误。因此,发电和分配过程中意外变化的有效监视和实时控制对于保证智能电网中的服务质量(QoS)要求是必不可少的。在这种情况下,本文介绍了数据集包含IMWSN期间在智能电网中监视和控制期间由IMWSN获取的测量值。这项工作提供了我们所提出的工作的更新详细信息比较,包括智能电网中的现有G-RPL [2]和EQSHC [3]方案的频道检测,通道分配和数据包转发算法,包括智能电网中的现有G-RPL [2]和EQSHC [3]方案。实验结果表明,DataSet并对智能电网中的实时事件监视和控制应用程序进行设计,开发,测试和验证,可用于算法的设计,开发,测试和验证。

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