Smart grid is an energy network that integrates advanced power equipment, communication technology and control technology. It can transmit two-way power and data among all components of the grid at the same time. The existing smart grid communication technologies include power line carrier (PLC) com-munication, industrial Ethernet, passive optical networks and wireless communi-cation, each of which have different advantages. Due to the complex application scenarios, massive sampling points and high transmission reliability require-ments, a single communication method cannot fully meet the communication re-quirements of smart grid, and heterogeneous communication modes are required. In addition, with the development of cellular technology, long term evolution (LTE)-based standards have been identified as a promising technology that can meet the strict requirements of various operations in smart grid. In this paper, we analyze the advantages and disadvantages of PLC and LTE communication, and design a network framework for PLC and LTE communication uplink heteroge-neous communication in smart grid. Then, we propose an uplink scheduling transmission method for sampling data with optimized throughput according to the requirements of system delay and reliability. Then, we use the formula deri-vation to prove the stability and solvability of the scheduling system in theory. Finally, the simulation results show that under the condition of satisfying the de-lay requirement, our proposed framework can optimally allocate the wireless communication resource and maximize the throughput of the uplink transmission system. Keywords: smart grid, heterogeneous communication, optimized throughput.
翻译:智能电网是一个将先进电力设备、通信技术和控制技术整合在一起的能源网络,它可以同时在电网各组成部分之间传输双向电力和数据。现有的智能电网通信技术包括电线载体(PLC)电网通关、工业以太网、被动光学网络和无线通信网,这些技术各有不同优势。由于应用情景复杂,取样点众多,传输可靠性要求高,单一通信方法不能充分满足智能电网的通信再需求,需要多种通信模式。此外,随着手机技术的发展,基于长期演变(LTE)的标准已被确定为有希望的技术,能够满足智能电网各种业务的严格要求。在本文件中,我们分析了PLC和LTE通信的利弊,为智能电网的PLC和LTE通信上端连接提供了一个网络框架。然后,我们提出了一种优化传输数据列表方法,以便根据系统延迟和可靠性的要求优化数据传输。我们最后,我们利用了稳定化的公式数据传输框架,通过最优化的传输系统,通过最优化的模拟,展示了我们稳定的传输结果。