The sensitivity of power system stability (including transient and dynamic stabilities) to generator parameters (including parameters of generator model, excitation system and power system stabilizer) is analyzed in d...The sensitivity of power system stability (including transient and dynamic stabilities) to generator parameters (including parameters of generator model, excitation system and power system stabilizer) is analyzed in depth by simulations. From the tables and plots of the resultant simulated data, a number of useful rules are revealed. These rules can be directly applied to the engineering checking of generator parameters. Because the complex theoretical analyses are circumvented, the checking procedure is greatly simplified, remarkably promoting the working efficiency of electrical engineers on site.展开更多
河北南网自动电压控制(Automatic Voltage Control,简称AVC)系统建立以来,在调节峰谷电压及节能降损等方面起到了巨大作用。但是部分机组调整效果不够理想、子站退运情况较多。结合运行现状,分析AVC子站控制参数存在的2类问题并提出解...河北南网自动电压控制(Automatic Voltage Control,简称AVC)系统建立以来,在调节峰谷电压及节能降损等方面起到了巨大作用。但是部分机组调整效果不够理想、子站退运情况较多。结合运行现状,分析AVC子站控制参数存在的2类问题并提出解决方案。方案实施后,系统运行情况良好,电压调控效率提高。展开更多
文摘The sensitivity of power system stability (including transient and dynamic stabilities) to generator parameters (including parameters of generator model, excitation system and power system stabilizer) is analyzed in depth by simulations. From the tables and plots of the resultant simulated data, a number of useful rules are revealed. These rules can be directly applied to the engineering checking of generator parameters. Because the complex theoretical analyses are circumvented, the checking procedure is greatly simplified, remarkably promoting the working efficiency of electrical engineers on site.
文摘河北南网自动电压控制(Automatic Voltage Control,简称AVC)系统建立以来,在调节峰谷电压及节能降损等方面起到了巨大作用。但是部分机组调整效果不够理想、子站退运情况较多。结合运行现状,分析AVC子站控制参数存在的2类问题并提出解决方案。方案实施后,系统运行情况良好,电压调控效率提高。