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首页> 外文期刊>Mathematical Problems in Engineering >CONTROL OF SYSTEMS WITH ASYMMETRIC BOUNDS USING LINEAR PROGRAMMING: APPLICATION TO A HYDROGEN REFORMER
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CONTROL OF SYSTEMS WITH ASYMMETRIC BOUNDS USING LINEAR PROGRAMMING: APPLICATION TO A HYDROGEN REFORMER

机译:线性规划的不对称边界系统控制:在氢重整器中的应用

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摘要

This paper studies controller design for feedback systems in the presence of asymmetrically bounded signals, using a case study. An asymmetric objective functional is used to consider the asymmetrically bounded signals, which makes possible to derive a linear programming problem. Solving this LP makes possible to design controllers that minimize certain outputs, fulfilling at the same time hard constraints on certain signals. The method is presented by application to a hydrogen reformer, a system in petrochemical plants that produces hydrogen from hydrocarbons: a mixed sensitivity problem is stated and solved, with an additional constraint given by the asymmetric limitations on the magnitude and rate of the control signal, and the asymmetricity in the disturbances.
机译:本文通过案例研究了存在非对称有界信号时反馈系统的控制器设计。使用非对称目标函数来考虑非对称有界信号,这有可能得出线性规划问题。解决此LP可以设计出最小化某些输出的控制器,同时满足对某些信号的严格约束。该方法是通过应用到氢重整器上来提出的,该重整器是石化工厂中从碳氢化合物中产生氢的系统:提出并解决了混合灵敏度问题,另外还受到控制信号的大小和速率的不对称限制的额外限制,以及干扰的不对称性。

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