Computer Engineering Department, American University of the Middle East, PO 220 Dasman 15453, Kuwait.
Department of Electrical Engineering, UAE University, Al-Ain, Abu Dhabi PO 15551, UAE.
Sensors (Basel). 2018 May 11;18(5):1517. doi: 10.3390/s18051517.
Supporting a conventional power grid with advanced communication capabilities is a cornerstone to transferring it to a smart grid. A reliable communication infrastructure with a high throughput can lay the foundation towards the ultimate objective of a fully automated power grid with self-healing capabilities. In order to realize this objective, the communication infrastructure of a power distribution network needs to be extended to cover all substations including medium/low voltage ones. This shall enable information exchange among substations for a variety of system automation purposes with a low latency that suits time critical applications. This paper proposes the integration of two heterogeneous wireless technologies (such as WiFi and cellular 3G/4G) to provide reliable and fast communication among primary and secondary distribution substations. This integration allows the transmission of different data packets (not packet replicas) over two radio interfaces, making these interfaces act like a one data pipe. Thus, the paper investigates the applicability and effectiveness of employing heterogeneous wireless networks (HWNs) in achieving the desired reliability and timeliness requirements of future smart grids. We study the performance of HWNs in a realistic scenario under different data transfer loads and packet loss ratios. Our findings reveal that HWNs can be a viable data transfer option for smart grids.
支持具有先进通信功能的传统电网是将其转换为智能电网的基石。具有高吞吐量的可靠通信基础设施可以为最终实现具有自我修复能力的全自动化电网奠定基础。为了实现这一目标,需要扩展配电网络的通信基础设施,以覆盖包括中/低压变电站在内的所有变电站。这将使变电站之间能够进行各种系统自动化信息交换,延迟时间低,适合时间关键型应用。本文提出了将两种异构无线技术(如 WiFi 和蜂窝 3G/4G)集成在一起,以在一次和二次配电变电站之间提供可靠和快速的通信。这种集成允许在两个无线电接口上传输不同的数据分组(而不是分组副本),从而使这些接口像一个数据管道一样工作。因此,本文研究了在不同数据传输负载和分组丢失率下,在现实场景中使用异构无线网络 (HWN) 来实现未来智能电网所需的可靠性和及时性要求的适用性和有效性。我们研究了 HWN 在不同数据传输负载和分组丢失率下的性能。研究结果表明,HWN 可以成为智能电网的一种可行的数据传输选择。