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Enhanced partial frequency variation starting of hydroelectric pumping units: Model based design and experimental validation

机译:增强的局部频率变化从水电泵装置开始:基于模型的设计和实验验证

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The hydroelectric pumped storage is one of the most sustainable solutions to store electrical energy for optimizing the grid operation. However, the pump motor starting may constitute a significant issue for the power plant. Indeed, the motor's large power and the long power lines (needed for connecting remotely located plants to the grid) may prevent a direct-on-line start. On the other hand, constraints as spaces availability in the powerhouse, and time and cost availability (especially for revamping projects) limit the feasibility of other starting methods. In this paper, a novel starting method is proposed for the revamping of a hydroelectric power plant (HPP), where a synchronous machine is used to drive the pump. On the basis of the power plant characteristics, an enhanced version of the synchronous starting with partial frequency variation is proposed, leading to the creation of a startup sequence capable of being integrated into the existing excitation control systems’ software (of both the generator and the motor installed in the power plant). Such Enhanced Partial Frequency Variation (EPFV) starting method combines the advantages of back-to-back starting method to the ones of asynchronous starting, without requiring additional equipment in respect to a conventional direct-on-line start solution. This is enabled by the model-based design approach here applied, which allows to determine the correct set of parameters and variables’ thresholds required for the machine startup, taking into account the specific characteristics of the HPP in study. The developed starting sequence, implemented into the real HPP by using the capabilities of the existing digital excitation control systems, allowed the correct starting of the motor. This is demonstrated by experimental data obtained during the 5MVA motor starting tests. The results also prove the effectiveness of the model-based design approach in enabling the definition of the pump starting sequence, as well as validating the mathematical model used for the sequence design.
机译:水电泵浦存储是存储电能以优化网格运行的最可持续解决方案之一。然而,泵电机启动可能构成电厂的重要问题。实际上,电机的大功率和长电线(将远程位于网格连接到网格的需要)可能会防止直线启动。另一方面,限制在强大的时间空间可用性,时间和成本可用性(特别是为改造项目)限制了其他启动方法的可行性。本文提出了一种新的起始方法,用于改造水力发电设备(HPP),其中同步机用于驱动泵。在发电厂特征的基础上,提出了具有部分频率变化的同步开始的增强版本,导致创建能够集成到现有激励控制系统软件(发电机和所述发电机)中的启动序列的创建序列电机安装在发电厂)。这种增强的部分频率变化(EPFV)启动方法将背对背启动方法的优点与异步开始的优点相结合,而不需要其他设备就传统的直线启动解决方案。这是通过此处的基于模型的设计方法来实现的,这允许确定机器启动所需的正确参数集和变量的阈值,同时考虑了HPP在研究中的特定特征。通过使用现有数字励磁控制系统的能力实现的开发的起始序列允许正确启动电机。通过在5MVA电机起动测试期间获得的实验数据来证明这一点。结果还证明了基于模型的设计方法的有效性在实现泵启动序列的定义中,以及验证用于序列设计的数学模型。

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