A compact SCADA system for a smaller size electric power system control-a fast, object-oriented and cost-effective approach

B. Stojković, I. Vujošević
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引用次数: 9

Abstract

Each EMS (energy management system) relies upon the SCADA system that gathers power system data, processes them and issues control commands. Among the all control functions of an EMS, the AGC (automatic generation control) is the most important one. A SCADA system is characterized by geographical spread, a great amount of data a complexity of belonging equipment, but by a very long period for the finalization and a very high investment costs, too. The long realization period compared with the extremely fast development of the available computer's hardware and software on the world's market, coupled with a permanent need for EMS upgrades caused by privatization of electric utility companies and deregulation of the electricity market, coerce some smaller size electric power companies to think in a different manner. This paper describes that manner - a unique control application, developed and implemented at the real power system. The specific feature of this control system is that it is based on the relatively poor set of power system data (around 70 input data), but a very good overall observability is achieved (around 300 output process informations). The second feature is the hardware a single personal computer with the acquisition interface board in it as the SCADA host, and existing "hybrid" telemetric system for power system data gathering and AGC commands transport. Third - the choice of the Visual Basic language provides a lot of powerful features and unlimited possibilities for future easy-to-make upgrades and improvements, such as: object oriented code, encapsulation of functions, full GUI with animation, various communications including and Web-based one etc.
一种用于小型电力系统控制的紧凑型SCADA系统——一种快速、面向对象和经济高效的方法
每个EMS(能源管理系统)都依赖于SCADA系统,该系统收集电力系统数据,对其进行处理并发出控制命令。在EMS的所有控制功能中,AGC(自动生成控制)是最重要的一项。SCADA系统具有地理分布广、数据量大、所属设备复杂、定型周期长、投资成本高的特点。与世界市场上可用的计算机硬件和软件的极快发展相比,实现周期很长,再加上电力公用事业公司私有化和电力市场放松管制导致的EMS升级的永久需求,迫使一些规模较小的电力公司以不同的方式思考。本文介绍了这种独特的控制方式在实际电力系统中的应用。该控制系统的具体特点是,它基于相对较差的电力系统数据集(大约70个输入数据),但实现了非常好的整体可观察性(大约300个输出过程信息)。第二个特点是硬件采用以采集接口板为SCADA主机的单台个人计算机和现有的用于电力系统数据采集和AGC命令传输的“混合”遥测系统。第三,选择Visual Basic语言提供了许多强大的功能和无限的可能性,使未来易于升级和改进,如:面向对象代码,函数封装,完整的GUI动画,各种通信,包括基于web的通信等。
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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