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首页> 外文期刊>Cybernetics and Systems >THE DESIGN OF THE SUPERHEATED-STEAM TEMPERATURE IMMUNE CONTROL SYSTEM AND ITS BIBO STABILITY ANALYSIS
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THE DESIGN OF THE SUPERHEATED-STEAM TEMPERATURE IMMUNE CONTROL SYSTEM AND ITS BIBO STABILITY ANALYSIS

机译:过热蒸汽温度免疫控制系统的设计及其双向稳定性

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摘要

A problem of designing an immune feedback controller (IFC) is addressed here. Based on the T-B cells feedback principle in biological immune responses, the nonlinear immune controller is designed. Concerning the superheated-steam temperature (SHST) control in power plants, we extend numerical solutions to the bounded-input-bounded-output (BIBO) stability based on the small-gain theorem, and Popov theorem, respectively. Also, an analytical numerical solution to the Popov theorem for the SHST immune system is developed avoiding the inconvenience of conventional graphical solutions. Furthermore, simulations for the system performances and the comparison of the stabilization region gained by the small-gain theorem and Popov criteria are extended. The system simulation results are satisfying and prove the conclusion that Popov criterion behaves better than small-gain theorem for this system.
机译:此处解决了设计免疫反馈控制器(IFC)的问题。基于生物免疫应答中的T-B细胞反馈原理,设计了非线性免疫控制器。关于发电厂的过热蒸汽温度(SHST)控制,我们分别基于小增益定理和Popov定理将数值解扩展到有界输入界有界输出(BIBO)稳定性。而且,开发了针对SHST免疫系统的波波夫定理的解析数值解,从而避免了传统图形解法的不便。此外,扩展了系统性能的仿真以及通过小增益定理和Popov准则获得的稳定区域的比较。系统仿真结果令人满意,并证明了Popov准则对于该系统的性能优于小增益定理。

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