

关键词: 安全稳定控制 低频低压减载 暂态能量函数 切机控制
EEAC 频率动态过程 频率仿真 按功率减载 测频算法
Abstract
Power system stability control, on which extensive attention has been paid, is an important measure to safeguard a reliable power system. With the quick development of power system, lots of more complicated security and stability problems are emerged. The safe running of power system requires eagerly the research and use of the latest technology of computer, communication , electronics and modern control theory to develop and manufacture stability control system and automatically safety control equipment.
In this paper, stability control of power system is focused. New ideas which
are the basis of deeper research are developed on the basis of extensive resource on related field in the process of researching a new intelligent style under frequency and under voltage load shedding equipment.
The latest research of power system stability control is reviewed firstly in this paper. Then, the main achievements at control theory and control equipment are introduced. At the end, the tendency of safety and stability control technology is introduced.
After years of research, direct method using transient energy function of power system has gotten important development, and has become the main method of time-fiend analysis. In chapter 2, basic theories of TEF method are introduced, and the EEAC method and its application in stability generator tripping control are discussed carefully. A lot of work still need to be done in order to make practical achievement.
The frequency transient process of multi-generator system is the important basis of under frequency load shedding scheme design. In this paper, the effects of frequency regulation of generator and load are included on the basis of linear disturbance model, and system digital simulation research is included too. According to the characteristics of multi-generator model and results of system digital simulation research, a new design and set scheme of underfrequency load shedding equipment on the basis of multi-generator system is developed in this paper. Compared&n bsp;with conventional scheme, this scheme advanced the characteristics of under frequency load shedding equipment and its adaptively to power system running style.
As a way to actualize this scheme, a new intelligent style under frequency and
Under voltage load shedding equipment on the basis of microcomputer is developed in this paper. In chapter 4, the improved algorithm of frequency measurement, the method of load shedding according to power, and the key technology of software and hardware structure are introduced in detail. At the end, the physical simulation results of this equipment are listed.
KEY WORDS:
power system stability control under-frequency and under-voltage load shedding
transient energy function extended equal area criterion
generator tripping frequency dynamical process
load shedding according to power frequency simulation Algorithm
目 录
摘要
ABSTRACT
第一章 绪论 (1)
§1-1 引言 (1)
§1-2 安全稳定控制研究现状 (2)
§1-3 论文的主要工作和章节安排 (7)
第二章 暂态能量函数与切机稳定控制 (8)
§2-1 多机系统的经典模型和暂态能量函数 (8)
§2-2 直接法的假设和扩展等面积定则 (9)
§2-3 切机模型及其实用判据 (12)
第三章 多机系统频率动态特性及低频减载的整定 (15)
§3-1 传统的单机模型及整定 (15)
§3-2 多机系统频率动态过程的数学模型 (16)
§3-3 多机系统频率动态过程的仿真计算 (20)
§3-4 低频减载设计方案新探讨 (24)
第四章 智能式微机低频低压减载装置的研究 (26)
§4-1 大电网频率电压紧急控制的新特点及新要求 (26)
§4-2 基于富氏滤波测频算法的改进研究 (27)
§4-3 智能式低频低压减载装置的设计原理 (31)
§4-4 装置动模试验报告 (39)
第五章 全文总结 (43)