Dynamic Operation of a Storage Power Plant (SPP) with Voltage Angle Control as Ancillary Service

Paul Gerdun, N. Ahmed, Vinaykumar Vernekar, Martin Töpfer, H. Weber
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引用次数: 5

Abstract

It is expected that in the near future, the electrical power supply networks will be significantly revolutionized. Today's conventional power plant structures will give way to a novel, inertia independent (free from rotating masses) power plant system. Such power stations, called storage power plants, will possess storages for different generation speed together with power electronic converters. They will be able to integrate and store energy from renewable sources. Since such a system will not possess any flywheels or rotating masses, thus frequency control as utilized in conventional power plants will be redundant. All the control principles necessary involving spinning reserve, primary and secondary control depending on frequency will be substituted by a comprehensive angle control of the nodal voltages in the transmission and distribution network. However, to be deemed truly feasible, these storage power plants must be able to function efficiently when they are integrated with conventional power plants and renewable energy sources. Thus, in this paper, these power plants are connected with conventional thermal and hydroelectric power stations as well as wind power plants, in a single network, and their dynamic behavior is studied under nodal voltage angle control as the ancillary service.
以电压角控制为辅助服务的储能电站动态运行研究
预计在不久的将来,电力供应网络将发生重大变革。今天的传统电厂结构将让位给一种新颖的、不依赖惯性(不受旋转质量影响)的电厂系统。这种发电站被称为储能发电站,它将拥有不同发电速度的存储器和电力电子转换器。他们将能够整合和储存来自可再生能源的能源。由于这样的系统将不具备任何飞轮或旋转质量,因此在传统电厂中使用的频率控制将是多余的。所有必要的控制原理,包括自旋储备、一次和二次频率控制,都将被输配电网络节点电压的综合角度控制所取代。然而,要被认为是真正可行的,这些储能发电厂必须能够有效地与传统发电厂和可再生能源相结合。因此,本文将这些电站与常规火电站、水电站以及风电场并网,研究其在节点电压角控制作为辅助服务下的动态行为。
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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