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首页> 外文期刊>Progress in Nuclear Energy >Sliding mode observer design for a PWR to estimate the xenon concentration & delayed neutrons precursor density based on the two point nuclear reactor model
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Sliding mode observer design for a PWR to estimate the xenon concentration & delayed neutrons precursor density based on the two point nuclear reactor model

机译:基于两点核反应堆模型的压水堆的滑模观测器设计,用于估算氙浓度和中子延迟前驱体密度

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摘要

One of the important operations in nuclear power plants is load-following in which imbalance of axial power distribution induces xenon oscillations. These oscillations must be maintained within acceptable limits otherwise the nuclear power plant could become unstable. Therefore, bounded xenon oscillation considered to be a constraint for the load-following operation. In other hands, precursors produce delayed neutrons which are most important in control of nuclear reactor, but xenon concentration & precursor density cannot be measured directly. In this paper, non-linear sliding mode observer which has the robust characteristics facing the parameters uncertainties and disturbances is proposed based on the two point nuclear reactor model to estimate the xenon concentration & delayed neutron precursor density of the Pressurized-Water Nuclear Reactor (PWR) using reactor power measurement The stability analysis is given by means Lyapunov approach, thus the system is guaranteed to be stable within a large range. The employed method is easy to implement in practical applications. This estimation is done taking into account the effects of reactivity feedback due to temperature and xenon concentration. Simulation results clearly show that the sliding mode observer follows the actual system variables accurately and is satisfactory in the presence of the parameters uncertainties & disturbances.
机译:核电站中的重要操作之一是跟随负荷,其中轴向功率分配的不平衡会引起氙气振荡。这些振荡必须保持在可接受的范围内,否则核电站可能变得不稳定。因此,有界氙气振荡被认为是负载跟随操作的约束。另一方面,前驱物产生延迟的中子,这对于控制核反应堆最重要,但氙气浓度和前驱物密度无法直接测量。本文基于两点核反应堆模型,提出了一种具有参数不确定性和扰动性的鲁棒特性的非线性滑模观测器,用于估算压水核反应堆(PWR)的氙浓度和中子前驱体密度。 )使用反应堆功率测量通过Lyapunov方法进行稳定性分析,从而确保系统在较大范围内保持稳定。所采用的方法易于在实际应用中实现。进行此估算时要考虑到由于温度和氙浓度引起的反应性反馈的影响。仿真结果清楚地表明,滑模观测器准确地遵循了实际的系统变量,并且在存在参数不确定性和干扰的情况下令人满意。

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