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Innovation concept for measurement gross error detection and identification in power system state estimation

机译:电力系统状态估计中测量总误差检测与识别的创新理念

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摘要

In this study, the innovation approach is used to estimate the measurement total error associated with power system state estimation. This is required because the power system equations are very much correlated with each other and as a consequence part of the measurements errors is masked. For that purpose an index, innovation index (II), which provides the quantity of new information a measurement contains is proposed. A critical measurement is the limit case of a measurement with low II, it has a zero II index and its error is totally masked. In other words, that measurement does not bring any innovation for the gross error test. Using the II of a measurement, the masked gross error by the state estimation is recovered; then the total gross error of that measurement is composed. Instead of the classical normalised measurement residual amplitude, the corresponding normalised composed measurement residual amplitude is used in the gross error detection and identification test, but with m degrees of freedom. The gross error processing turns out to be very simple to implement, requiring only few adaptations to the existing state estimation software. The IEEE-14 bus system is used to validate the proposed gross error detection and identification test.
机译:在本研究中,创新方法用于估计与电力系统状态估计相关的测量总误差。这是必需的,因为电力系统方程相互之间非常相关,因此,掩盖了部分测量误差。为此目的,提出了一个创新指数(II)的指数,该指数提供了测量所包含的新信息的数量。关键测量是II低的测量的极限情况,II指数为零,并且其误差被完全掩盖。换句话说,这种测量不会给总误差测试带来任何创新。使用测量的II,可以恢复状态估计所掩盖的总误差;那么就构成了该度量的总误差。代替经典的归一化测量残差幅度,在总误差检测和识别测试中使用了相应的归一化组合测量残差幅度,但自由度为m。事实证明,总错误处理非常容易实现,只需要对现有状态估计软件进行少量调整即可。 IEEE-14总线系统用于验证建议的总错误检测和识别测试。

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