使用局部测量来估计电压稳定裕度

Khoi Vu, Miroslav Begovic, D. Novosel, Murari Mohan Saha
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引用次数: 566

摘要

实时估计电力系统与电压崩溃的接近程度仍然面临着困难。除了数据管理和计算问题外,任何集中控制方法都受到远程数据通信可靠性的影响。在本文中,作者描述了一种新的数据处理方法来估计电压崩溃的接近度。这种方法(代号为SMARTDevice,意为稳定监测和参考调谐装置)只采用局部测量——母线电压和负载电流——并计算传输系统相对于母线的强度。当本地负载接近此值时,将发生崩溃。该方法简单,可以在数值继电器中实现。将SMARTDevice的性能与传统欠压继电器进行了比较。结果表明,后者可以发生误操作,而新装置则不会。SMARTDevice实际上是一种新型电压继电器,其设定值自动调整到电力系统状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Use of local measurements to estimate voltage-stability margin
Estimating the proximity of power systems to voltage collapse in real-time still faces difficulties. Beside the data management and computational issues, any central-control method is subject to the reliability of long-distance data communications. In the paper, the authors describe a new data-processing method to estimate the proximity to voltage collapse. The method (code-named SMARTDevice, for Stability Monitoring And Reference Tuning Device) employs only local measurements-bus voltage and load current-and calculates the strength of the transmission system relative to the bus. The collapse occurs when the local load approaches this value. The method is simple enough so that it can be implemented in a numerical relay. The performance of SMARTDevice is compared against the conventional undervoltage relays. It is shown that the latter can misoperate while the new device does not. SMARTDevice is in fact a new breed of voltage relay whose setpoint is automatically tuned to the power system condition.
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