TNB配电中SCADA系统导频电缆通信替代通信技术研究

Muhammad Hanif Abdul Aziz, F. Kasran, A. A. Rahim, Fathinah Mohd Bakri, Mohd Ridzuan Mahat, Ridwan Mohamad
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摘要

SCADA(监控和数据采集)系统对Tenaga国家电力公司(TNB)至关重要,在意外供电的情况下,它可以通过提供故障点的准确信息来执行远程控制并快速恢复供电。为了实现SCADA系统的高可靠性,TNB分配网络(DN)采用了几种通信介质:光纤、铜线/导频线、超高频、租用线路、卫星和通用分组无线电业务(GPRS)。铜线被广泛地称为导线,在主变电站的SCADA通信中被大量使用,更不用说光纤了。在鲁棒性的基础上建立通信的简单性使得导频线在SCADA系统中的利用率很高。但是,通过导频线进行通信,会受到地下铺设的电力电缆的噪音的影响。目前,用于导频线的通信调制解调器并不专门用于过感电压环境。因此,高感应电压下的通信大多存在间歇性问题,从而影响了SCADA系统的使用性能。因此,本报告讨论了电力线载波应用作为一种替代技术,作为高感应电压环境下间歇性远程终端单元(RTU)通信的最佳解决方案,以及其他长距离通信(超过10km)和未知故障的问题。选择三个具有不同导线问题的站点来测试PLC调制解调器的性能。总体而言,采用PLC调制解调器技术可以实现高感应电压下的RTU通信。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Alternative Communication Technology for Pilot Cable Communication for SCADA System in TNB Distribution
SCADA (Supervisory Control and Data Acquisition) system is crucial in Tenaga Nasional Berhad (TNB) as power utility to perform remote control and restore supply quickly by providing accurate information on failure points, in the event of an unscheduled power supply. In order to achieve high reliability in SCADA system, TNB Distribution Network (DN) uses several communication mediums: fibre optics, copper wire/pilot wire, UHF, leased-line, satellite, and General Packet Radio Services (GPRS). Copper wire, widely known as pilot wire, is highly used for SCADA communication in primary substation, not to mention fibre optic. The simplicity in establishing the communication on top of robustness has led to the high utilisation of pilot wires in SCADA system. However, the communication over pilot wires suffers from electrical noise of power cables that are laid together underground. Currently, the communication modem used for pilot wires is not dedicated to operating over induced voltage environments. Hence, most communication under high induced voltage experiences intermittent issues, thus deteriorating the service performance of SCADA system. Therefore, this report discusses the Power Line Carrier application as an alternative technology to serve as an optimum solution for intermittent Remote Terminal Unit (RTU) communication over high induced voltage environments and other long-distance issues communication (over 10km) and unknown failure. Three sites with different pilot wire issues are selected to test PLC modem performance. Overall, RTU communication under high induced voltage is achievable using PLC modem technology.
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