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Experimental Characterization of Methods for Connecting Real-Time Simulations and Synchrophasors

机译:连接实时仿真和同步素的方法的实验表征

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Wide area monitoring, protection and control systems will likely be implemented in future transmission control rooms and will be essential to ensure the correct operation of the power systems. These solutions will heavily rely on the application of Phasor Measurement Units and synchrophasors. Thus, it is critical that any algorithm implementation is extensively tested in advance covering any possible operative scenario. Hardware in the Loop testing can be a very effective approach to test algorithm implementations in a realistic but virtual and fully controllable environment. This implies the necessity of combining synchrophasors, and PMU hardware with real-time simulations. This paper examines three alternative approaches for combining synchrophasors with a real-time simulation platform. Further-more, an experimental setup where these approaches have been implemented and tested is described.
机译:广域的监控,保护和控制系统可能在未来的传输控制室中实施,这对于确保电力系统的正确操作至关重要。 这些解决方案将严重依赖于相量测量单元和同步素的应用。 因此,重要的是,预先覆盖任何可能的操作场景,任何算法实现都会被广泛测试。 环路测试中的硬件可以是一种非常有效的方法来测试算法实现在逼真但虚拟和完全可控的环境中。 这意味着必须与实时模拟结合同步素仪和PMU硬件的必要性。 本文研究了三种替代方法,用于将同步素与实时仿真平台组合。 更重要的是,描述了这些方法已经实现和测试的实验设置。

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