蒸汽锅炉喷射调节器的结构和参数优化

G. Kulakov, N. V. Voyush
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引用次数: 0

摘要

蒸汽温度控制对蒸汽锅炉的效率、可靠性和耐用性有重大影响。文章特别关注了蒸汽锅炉喷射调节器在大负荷变化范围内运行时显著提高效率的相关性。文章指出,解决这一问题的主要方向之一是使用具有动态补偿功能的优化调节器,以及同时针对偏差和扰动进行调节的组合原则。我们提出了一种组合式自动控制系统,该系统对最危险的测量内部扰动具有完全不变性,在处理外部扰动时具有部分不变性,并规定了受控参数的允许偏差。同时,为了提高主要影响下的调节质量,建议利用控制对象的前导部分和主要部分的传递函数进行优化,并在执行纠正措施时将双电路系统的内部轮廓转化为具有单一传输系数的放大器。此外,还建议根据对调节作用通道上有条件延迟的对象进行动态补偿的原则来形成纠偏调节器的结构,这样就有可能在调节作用激增时确保规定的调节质量。因此,与典型的双回路系统或带内部模型的不变式自动控制系统相比,在处理内部和外部测量干扰时,速度和精度都有了显著提高,因此可以建议在火力发电过程自动化领域广泛采用所提出的不变式级联自动控制系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural and Parametric Optimization of Steam Boiler Injection Regulators
Steam temperature control significantly affects the efficiency, reliability and durability of steam boilers. In the article, special attention is paid to substantiating the relevance of a significant increase in the efficiency of steam boiler injection regulators operating in a wide range of load changes. It is indicated that one of the main directions of solving this problem is the use of optimal regulators with dynamic compensation and combined principles of regulation for deviation and perturbation at the same time. A combined automatic control system is proposed with full invariance with respect to the most dangerous measured internal disturbance and with partial invariance when working out an external disturbance with specified permissible deviations of the controlled parameter. At the same time, in order to improve the quality of regulation under the main influences, it is proposed to carry out optimization with the use of the transfer functions of the leading and main sections of the control object as well as to turn the internal contour of the two-circuit system into an amplifier with a single transmission coefficient when working out the corrective action. Also, it is proposed to form the structure of the corrective regulator on the basis of the principle of dynamic compensation for objects with a conditional delay along the channel of regulatory action, which makes it possible to ensure the specified quality of regulation when working out the control action surge. Thus, a significant increase in speed and accuracy is achieved when working out internal and external measured disturbances compared to a typical two-circuit system or an invariant automatic control system with an internal model, which makes it possible to recommend the proposed invariant cascade automatic control system for widespread implementation in the field of automation of thermal power processes.
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