针对电网AGC指令频繁动作的锅炉主蒸汽温度控制策略研究

Ruicai Si, Wang Songhan, Liu Xiwen, Zhongyang Wang, L. Jia, Zhong-xu Dou, Zhou Chi
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引用次数: 0

摘要

传统的PID在火电机组串级控制的主蒸汽温度控制系统中得到了广泛的应用。虽然该控制方案易于现场调试,但由于主汽温控制系统具有参数变、惯性大、时滞大的特点,仅通过调整PID参数无法解决汽温波动大、过温问题。特别是当电网AGC指令波动频繁时,常规控制策略难以应对,导致主汽温调节质量变差,影响机组的经济性和安全性。本文采用子PID设定值自适应控制逻辑和防止主汽温超调的减温注水逻辑,解决了AGC指令频繁波动下主汽温调节质量变差的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Temperature Control Strategy of Boiler Main Steam for Frequent Action of AGC Command in Power Grid
Traditional PID is widely used in the main steam temperature control system of thermal power unit Cascade control. Although this control scheme is easy to be debugged on site, it is impossible to solve the problem of large fluctuation and over temperature of steam temperature only by adjusting PID parameters due to the characteristics of variable parameters, large inertia and large time delay of main steam temperature control system. Especially when the AGC command of power grid fluctuates frequently, the conventional control strategy is difficult to deal with, resulting in the change of main steam temperature regulation quality Poor, affecting unit economy and safety. In this paper, the sub PID set value adaptive control logic and desuperheating water injection logic to prevent the main steam temperature overshoot are used to solve the problem of the quality deterioration of the main steam temperature regulation under the frequent fluctuation of AGC instructions.
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