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Interaction and Coordination among Nuclear Power Plants, Power Grids and Their Protection Systems

机译:核电厂,电网及其保护系统之间的相互作用和协调

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摘要

Nuclear power plants (NPPs) have recently undergone rapid development in China. To improve the performance of both NPPs and grids during adverse conditions, a precise understanding of the coordination between NPPs and grids is required. Therefore, a new mathematical model with reasonable accuracy and reduced computational complexity is developed. This model is applicable to the short, mid, and long-term dynamic simulation of large-scale power systems. The effectiveness of the model is verified by using an actual NPP full-scope simulator as a reference. Based on this model, the interaction and coordination between NPPs and grids under the conditions of over-frequency, under-frequency and under-voltage are analyzed, with special stress applied to the effect of protection systems on the safe operation of both NPPs and power grids. Finally, the coordinated control principles and schemes, together with the recommended protection system values, are proposed for both NPPs and grids. These results show that coordination between the protection systems of NPPs and power networks is a crucial factor in ensuring the safe and stable operation of both NPPs and grids. The results can be used as a reference for coordination between NPPs and grids, as well as for parameter optimization of grid-related generator protection of NPPs.
机译:核电厂(NPP)最近在中国得到了快速发展。为了在不利条件下提高NPP和电网的性能,需要对NPP和电网之间的协调性有一个精确的了解。因此,开发了一种新的数学模型,该模型具有合理的精度和降低的计算复杂度。该模型适用于大型电力系统的短期,中期和长期动态仿真。通过使用实际的NPP全范围模拟器作为参考来验证模型的有效性。在此模型的基础上,分析了核电厂与电网在超频,欠频和欠电压下的相互作用和协调性,并重点研究了保护系统对核电厂和电力安全运行的影响。网格。最后,提出了针对核电厂和电网的协调控制原理和方案以及建议的保护系统值。这些结果表明,核电厂保护系统与电网之间的协调是确保核电厂和电网安全稳定运行的关键因素。研究结果可作为核电厂与电网协调的参考,也可作为与电网有关的核电厂发电机保护参数的优化参考。

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