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Comparative Analysis of the Dynamic Properties of Variants of Automatic Frequency and Power Control Systems for Steam Power Plants Equipped with Once-Through Boilers

机译:配有直通式锅炉的蒸汽发电厂自动频率和功率控制系统变量动态特性的比较分析

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Considerably complicated power-system problems that have to be solved by the Russian power-generating units and, consequently, the need to ensure the fully automated operation of the power-generating units under working loads necessitated improving the structure of the automatic frequency and power control systems (AFPCSs). Not all solutions adopted in the 1980s, in particular, the use of the classical variants of the automatic power control systems (APCS-1 and APCS-2), ensure the required quality of suppressing power-system disturbances. In this work, the authors performed comparative analysis of six AFPCS variants that correspond to both the classical APCS-1 and APCS-2 and their combinations. The research was carried out using a mathematical model under disturbances of characteristic types, viz., those caused by network frequencies, unit power settings, and boiler loads. The model was developed by approximating experimental step response curves of the 300-MW power-generating unit 3 equipped with a once-through boiler at Kashirskaya State District Power Station. The quality of control was analyzed by comparing the amplitude-frequency characteristics and the curves of the transient processes of the compared AFPCS variants and the integral quadratic criterion values and the maximum deviations of the controlled variables and control actions in the course of the above processes. The combined AFPCS and advanced APCS-2 proved to be the most preferable. The combined AFPCS variants offer advantages in terms of maintaining the steam pressure, while the advanced APCS-2 has an advantage as a means for controlling the unit power with the gain in the first case being somewhat greater than that in the second case. Both variants have been successfully used for a long time at numerous power-generating units of the country.
机译:俄罗斯发电机组必须解决相当复杂的电力系统问题,因此,需要确保工作负荷下发电机组的全自动运行,因此有必要改善自动频率和功率控制的结构系统(AFPCS)。并不是所有在1980年代采用的解决方案,特别是自动功率控制系统的经典变体(APCS-1和APCS-2)的使用,都确保了抑制电力系统干扰所需的质量。在这项工作中,作者对与传统APCS-1和APCS-2及其组合相对应的六个AFPCS变体进行了比较分析。该研究是使用数学模型在特征类型的干扰(即由网络频率,单位功率设置和锅炉负荷引起的干扰)下进行的。该模型是通过近似估算在Kashirskaya State District Power Station配有直流锅炉的300 MW发电机3的实验阶跃响应曲线而开发的。通过比较所比较的AFPCS变体的振幅频率特性和瞬态过程的曲线,积分二次标准值以及上述过程中受控变量和控制动作的最大偏差,分析了控制质量。事实证明,将AFPCS和先进的APCS-2组合在一起是最可取的。组合的AFPCS变型在保持蒸汽压力方面具有优势,而先进的APCS-2在控制单位功率方面具有优势,第一种情况下的增益略大于第二种情况。两种变体已在该国众多发电单位中成功使用了很长时间。

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