Title :
An extended complex Kalman filter for frequency measurement of distorted signals
Author :
Dash, P.K. ; Jena, R.K. ; Panda, G. ; Routray, Aurobinda
Author_Institution :
Regional Eng. Coll., Rourkela, India
fDate :
8/1/2000 12:00:00 AM
Abstract :
The design of an extended complex Kalman filter for the measurement of power system frequency has been presented in this paper. The design principles and the validity of the model have been outlined. A complex model has been developed to track a distorted signal that belongs to a power system. The model inherently takes care of the frequency measurement along with the amplitude and phase of the signals. The theory has been applied to standard test signals representing the worst-case measurement and network conditions in a typical power system. The proposed algorithm is suitable for real-time applications where the measurement noise and other disturbances are high. The complex quantities can be conveniently handled using a floating point processor. Comparison of the results of the proposed method with those obtained from a real extended Kalman filter reveals the superior performance of the former method
Keywords :
Kalman filters; computerised instrumentation; covariance matrices; frequency estimation; frequency measurement; interference suppression; nonlinear filters; power system measurement; real-time systems; signal processing; amplitude; complex model; covariance setting; distorted signal; distorted signals; extended complex Kalman filter; floating point processor; frequency measurement; phase; power system frequency; real extended Kalman filter; real-time applications; standard test signals; worst-case measurement; Distortion measurement; Frequency estimation; Frequency measurement; Phase estimation; Pollution measurement; Power measurement; Power system measurements; Power system modeling; Power system protection; Signal processing algorithms;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on