Time Synchronization Sensitivity in SV-based PMU Consistency Assessment

M. Agustoni, P. Castello, G. Frigo, Giacomo Gallus
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Abstract

Modern power systems are rapidly transitioning towards a fully digital substation paradigm. Based on the IEC 61850, a common communication protocol between the different intelligent electronic devices (IEDs) promises a significant enhancement in terms of efficiency and interoperability. In this context, synchronization represents a crucial aspect as it allows us to rigorously compare measurements taken at the same time in different locations. In this paper, we consider a measurement chain for synchrophasor estimation based on digital inputs: an instrument transformer, a stand-alone merging unit (SAMU) and a phasor measurement unit (PMU). Both the SAMU and the PMU are equipped with independent synchronization sources. In case the SAMU loses its synchronization, the final measurement result would be considered invalid until a complete restoration of the SAMU synchronization status. In view of a longer continuity of operation, this paper proposes an alternative approach to evaluate the PMU Time Quality in real-time. This approach allows for continuing crucial monitoring and control operations, such as state estimation and fault detection, even in the presence of temporary loss of synchronization. A characterization, in both simulated and experimental conditions, proves the potential and reliability of the proposed approach. In the considered test case, the come-back within a sufficient time quality is correctly detected in less than 200 s, while waiting for the full restoration of the SAMU time reference would cost several minutes.
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基于sv的PMU一致性评估中的时间同步敏感性
现代电力系统正迅速向全数字化变电站过渡。基于IEC 61850,不同智能电子设备(ied)之间的通用通信协议承诺在效率和互操作性方面有显著提高。在这种情况下,同步是一个至关重要的方面,因为它允许我们严格比较在不同位置同时进行的测量。在本文中,我们考虑了一个基于数字输入的同步相量估计测量链:一个仪器变压器,一个独立合并单元(SAMU)和一个相量测量单元(PMU)。SAMU和PMU都配备了独立的同步源。如果SAMU失去了同步,最终的测量结果将被认为是无效的,直到SAMU的同步状态完全恢复。针对长时间连续运行的要求,提出了一种实时评价PMU时间质量的替代方法。这种方法允许持续进行关键的监视和控制操作,例如状态估计和故障检测,即使在暂时丢失同步的情况下也是如此。在模拟和实验条件下的表征证明了所提出方法的潜力和可靠性。在考虑的测试用例中,在不到200秒的时间内正确检测到足够时间质量的回退,而等待SAMU时间参考的完全恢复将花费几分钟。
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