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Adaptive impedance-based out-of-step detection of synchronous generator without any network reduction

机译:基于自适应阻抗的同步发电机失步检测,无需减少网络

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摘要

An adaptive technique for out-of-step (OOS) protection by modifying the impedance-based method is proposed in this study. Impedance-based methods are powerful and are operational in the power system as the main protection of OOS conditions. The setting of these relays depends on some parameters of the generator and power system that should be updated for the setting. The presence or absence of generator units in a power plant and transient conditions directly affects the machine dynamic parameters. Service or not in service of power lines and power system configurations can change the impedance of the power system at the generator terminals. Furthermore, to use the methods in a multi-machine power system, an equivalent two-area system is needed that is a complicated and time-consuming procedure. It should be made clear that these complexities limit the application of the impedance-based methods. Therefore, to remove these complexities, all factors that influence the relay setting are considered together in this research. The simulation results show that the proposed adaptive technique overcomes some of the problems and difficulties associated with impedance-based methods as well.
机译:通过修改基于阻抗的方法,提出了一种自适应的失步(OOS)保护技术。基于阻抗的方法功能强大,并且在电力系统中可作为OOS条件的主要保护措施。这些继电器的设置取决于发电机和电力系统的某些参数,应对此设置进行更新。电厂中发电机单元的存在与否以及瞬态条件直接影响机器的动态参数。电力线和电力系统配置的服务与否可以改变发电机端子处电力系统的阻抗。此外,为了在多机器动力系统中使用这些方法,需要等效的两区域系统,这是复杂且耗时的过程。应该明确的是,这些复杂性限制了基于阻抗的方法的应用。因此,为消除这些复杂性,本研究将所有影响继电器设置的因素都考虑在内。仿真结果表明,所提出的自适应技术也克服了与基于阻抗的方法相关的一些问题和困难。

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