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Shifted-ectropy based nonlinear dynamic output-feedback power-level control for pressurized water reactors

机译:基于移位法的压水堆非线性动态输出反馈功率级控制

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Nuclear fission energy is currently the sole energy that can substitute fossil in a centralized way and great amount with commercial availability and economic competitiveness. Power-level control is one of the key techniques which provide safe, stable and efficient operation for nuclear power plants. The physically-based regulation theory is definitely a promising trend of modern control theory, which can provide a control design method that suppresses the unstable part of the system dynamics and remains the stable part. Usually, control laws designed by the physically-based control theory have a simple form and high performance. Stimulated by this, a novel nonlinear dynamic output feedback power-level control law is established in this paper for the pressurized water nuclear reactors (PWRs) based upon its natural dynamic features. This newly-developed controller guarantees not only the globally asymptotic closed-loop stability but also the satisfactory transient performance through properly adjusting the feedback gains. Furthermore, this controller has the L2 disturbance attenuation performance. Numerical simulation results not only verify the correctness of the theoretical results but also illustrate the high control performance.
机译:核裂变能源目前是唯一可以集中化石化的能源,具有商业可得性和经济竞争力。功率水平控制是为核电站提供安全,稳定和高效运行的关键技术之一。基于物理的调节理论无疑是现代控制理论的一个有前途的趋势,它可以提供一种抑制系统动力学不稳定部分并保持稳定部分的控制设计方法。通常,基于物理的控制理论设计的控制律具有简单的形式和高性能。在此基础上,基于压水堆的自然动态特性,建立了压水核反应堆的非线性动态输出反馈功率水平控制律。通过适当调节反馈增益,这种新开发的控制器不仅保证了全局渐近闭环稳定性,而且还保证了令人满意的瞬态性能。此外,该控制器具有L 2 干扰衰减性能。数值仿真结果不仅验证了理论结果的正确性,而且具有较高的控制性能。

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