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Robust Control of Once-Through Canadian Supercritical Water-Cooled Reactors

机译:直通式加拿大超临界水冷反应堆的鲁棒控制

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The Canadian SuperCritical Water-cooled Reactor (SCWR) is a once-through pressure tube–type SCWR under development in Canada. It is a multivariable system with strong cross coupling and a high degree of nonlinearity. The outputs are sensitive to disturbances, and the variations in the thermal parameters should be limited to avoid thermal stress to its components. Therefore, designing an adequate control system is challenging. In this paper, robust multivariable feedback control and feedforward control are proposed to design the control system of the Canadian SCWR. Three uncertainty sources are considered: unmodeled uncertainty, linearization uncertainty, and model reduction uncertainty. These uncertainties are evaluated taking into account all aspects affecting the linear dynamic model used in the robust controller synthesis, and the uncertainty bounds are determined to cover the uncertainties. The robust feedback controller is synthesized using the μ-synthesis approach. The feedforward control is added to the robust feedback control to further improve the control performance. It is obtained through disturbance compensation features for a feedforward controller. The control performance of the hybrid control system is evaluated based on the nonlinear simulation by introducing different setpoint changes. The designed control system can stabilize the Canadian SCWR, and the control performance is satisfactory.
机译:加拿大超临界水冷堆(SCWR)是加拿大正在开发的直流压力管式SCWR。这是一个具有强交叉耦合和高度非线性的多变量系统。输出对干扰敏感,并且应限制热参数的变化,以避免对其组件产生热应力。因此,设计适当的控制系统具有挑战性。本文提出了鲁棒的多变量反馈控制和前馈控制来设计加拿大SCWR的控制系统。考虑了三个不确定性来源:未建模的不确定性,线性化不确定性和模型归约不确定性。考虑到影响鲁棒控制器综合中使用的线性动力学模型的所有方面,对这些不确定性进行评估,并确定不确定性范围以覆盖不确定性。鲁棒的反馈控制器是使用μ合成方法合成的。前馈控制被添加到鲁棒的反馈控制中,以进一步提高控制性能。它是通过前馈控制器的干扰补偿功能获得的。基于非线性仿真,通过引入不同的设定值变化来评估混合控制系统的控制性能。设计的控制系统可以稳定加拿大的SCWR,控制性能令人满意。

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