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Differential Games Controllers That Confine a System to a Safe Region in the State Space, With Applications to Surge Tank Control

机译:差分游戏控制器将系统限制在状态空间的安全区域,应用于调压室控制

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摘要

Surge tanks are units employed in chemical processing to regulate the flow of fluids between reactors. A notable feature of surge tank control is the need to constrain the magnitude of the Maximum Rate of Change (MROC) of the surge tank outflow, since excessive fluctuations in the rate of change of outflow can adversely affect down-stream processing (through disturbance of sediments, initiation of turbulence, etc.). Proportional + Integral controllers, traditionally employed in surge tank control, do not take direct account of the MROC. It is therefore of interest to explore alternative approaches. We show that the surge tank controller design problem naturally fits a differential games framework, proposed by Dupuis and McEneaney, for controlling a system to confine the state to a safe region of the state space. We show furthermore that the differential game arising in this way can be solved by decomposing it into a collection of (one player) optimal control problems. We discuss the implications of this decomposition technique, for the solution of other controller design problems possessing some features of the surge tank controller design problem.
机译:调压罐是用于化学处理的单元,用于调节反应堆之间的流体流量。调压罐控制的一个显着特征是需要限制调压罐流出的最大变化率(MROC)的大小,因为流出变化率的过度波动会不利地影响下游处理(通过干扰沉积物,湍流的产生等)。传统上在调压箱控制中使用的比例+积分控制器不直接考虑MROC。因此,有兴趣探索替代方法。我们表明,调压罐控制器的设计问题自然适合于Dupuis和McEneaney提出的用于控制系统以将状态限制在状态空间的安全区域的差分博弈框架。我们进一步证明,以这种方式产生的差分博弈可以通过将其分解为(一个玩家)最优控制问题的集合来解决。我们讨论了这种分解技术的含义,以解决其他具有调压箱控制器设计问题特征的控制器设计问题。

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