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首页> 外文期刊>IEEE Transactions on Nuclear Science >PD Power-Level Control Design for PWRs: A Physically-Based Approach
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PD Power-Level Control Design for PWRs: A Physically-Based Approach

机译:PWR的PD功率级控制设计:基于物理的方法

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摘要

Pressurized water reactor (PWR) is the most widely used nuclear fission reactor, and the renaissance of fission energy industry needs the safe, stable and efficient operation of PWRs. Power-level control technique which strengthens the closed-loop stability and dynamic performance is meaningful to build a strong operation strategy for PWRs. In this paper, after extending the shifted-ectropy of thermodynamic systems to that of transport systems, a proportional-differential (PD) power-level controller is proposed for PWRs based on the physically-based approach. A sufficient condition for this PD controller to provide the globally asymptotic stability of those reactor state variables is established. Numerical simulation results not only verify the correctness of the theoretic results but also illustrate the relationship between the control performance and controller parameters. The meaning of this result is giving a theoretic explanation to why the simple PD control is effective for PWR power-level regulation practically.
机译:压水堆(PWR)是应用最广泛的核裂变反应堆,裂变能源工业的复兴需要压水堆的安全,稳定和高效的运行。增强闭环稳定性和动态性能的功率级控制技术对于建立强大的压水堆运行策略具有重要意义。在本文中,将热力系统的位移-方向扩展到运输系统,将基于物理方法的比例压差(PD)功率级控制器提出用于压水堆。建立了此PD控制器提供那些反应堆状态变量的全局渐近稳定性的充分条件。数值仿真结果不仅验证了理论结果的正确性,而且说明了控制性能与控制器参数之间的关系。该结果的含义从理论上解释了为什么简单的PD控制实际上对PWR功率电平调节有效。

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