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RELIABLE ANALYSIS ON FAST VALVING OF ULTRA-SUPERCRITICAL UNIT UNDER TRANSIENT FAULT CONDITIONS

机译:瞬态故障条件下超超超临界单位快速阀的可靠分析

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Fast valving of ultra-supercritical unit has great effects on over-speed prevention, load-shedding control, transient stability analysis of electrical system and other security problems. The purpose of fast valving is to maintain the stability of power system once fault or load shedding of unit occurs in the electric power system. Therefore, it is of great significance to study the reliability of fast valving for ultra-supercritical unit. In this paper, the KU (short shedding) logic condition of SIEMENS T3000 system is analyzed as the research object of fast valving. The unit can be avoided over speed by monitoring the unit load and fast valving under faulty grid conditions based on the KU control. A series of measures will be taken after KU is triggered, for instance the governing valving will be closed quickly and the DEH (digital electro-hydraulic) control of the steam turbine will be switched to speeding control mode. On the other hand, the unit will return to normal operation if the transient fault of power grid disappears. The key contributions of this thesis include three parts: Firstly, based on the analysis of control characteristics of ultra-supercritical unit and protective logic and triggered conditions of KU function, a novel dynamic model by coupling the fast valving of steam turbine and the transient stability of generator is established by applying the PSCAD software. Then, the dynamic response process of ultra-supercritical unit is simulated and calculated by adopting the coupling dynamic model when KU function is triggered. Also the influence factors and reliability of fast valving are analyzed under transient fault conditions. Finally, two optimized measures by increasing the time delay and the speed of quantitative judgment are put forward to reduce risks and avoid the misoperation of signal distortion which may be caused by the power transmitter under transient fault conditions. The results of this study can not only help to evaluate the reliability of fast valving function scientifically in power grid transient fault, but also guide the technicians to analyze the stability of the power grid.
机译:超超临界机组的快速阀门对超速防止,负载脱落控制,电气系统的瞬态稳定性分析以及其他安全问题具有很大的影响。快速阀门的目的是保持电力系统的稳定性,一旦在电力系统中发生单元的故障或负载脱落。因此,研究超临界单位的快速阀的可靠性具有重要意义。本文,分析了西门子T3000系统的KU(短脱落)逻辑条件作为快速阀门的研究对象。通过基于KU控制,可以通过监视单元负载和快速阀门来避免通过速度避免该装置。在KU被触发后,将采取一系列措施,例如控制阀门将快速关闭,蒸汽轮机的DEH(数字电液)控制将切换到超速控制模式。另一方面,如果电网的瞬态故障消失,则本机将返回正常操作。本论文的主要贡献包括三个部分:首先,基于超超临界单位和保护逻辑的控制特性和Ku函数的保护逻辑和触发条件,通过耦合汽轮机快速阀和瞬态稳定性的新型动态模型通过应用PSCAD软件建立发电机。然后,通过采用KU函数触发时采用耦合动态模型来模拟和计算超超临界单元的动态响应过程。在瞬态故障条件下,分析了快速阀的影响因素和可靠性。最后,提高了两种优化的测量,通过增加时间延迟和定量判断的速度来降低风险,并避免可能由瞬态故障条件下的电力发射器引起的信号变形的误操作。本研究的结果不仅可以帮助在电网瞬态故障中科学地评估快速阀函数的可靠性,还可以指导技术人员分析电网的稳定性。

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