Vol. 14, No. 1, January 31, 2020
10.3837/tiis.2020.01.004,
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Abstract
The synchronous phasor measurement algorithm is the core content of the phasor measurement unit. This manuscript proposes a dynamic synchronous phasor measurement algorithm based on compressed sensing theory. First, a dynamic signal model based on the Taylor series was established. The dynamic power signal was preprocessed using a least mean square error adaptive filter to eliminate interference from noise and harmonic components. A Chirplet overcomplete dictionary was then designed to realize a sparse representation. A reduction of the signal dimension was next achieved using a Gaussian observation matrix. Finally, the improved orthogonal matching pursuit algorithm was used to realize the sparse decomposition of the signal to be detected, the amplitude and phase of the original power signal were estimated according to the best matching atomic parameters, and the total vector error index was used for an error evaluation. Chroma 61511 was used for the output of various signals, the simulation results of which show that the proposed algorithm cannot only effectively filter out interference signals, it also achieves a better dynamic response performance and stability compared with a traditional DFT algorithm and the improved DFT synchronous phasor measurement algorithm, and the phasor measurement accuracy of the signal is greatly improved. In practical applications, the hardware costs of the system can be further reduced.
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Cite this article
[IEEE Style]
H. Yu, Y. Li, Y. Du, "Dynamic Synchronous Phasor Measurement Algorithm Based on Compressed Sensing," KSII Transactions on Internet and Information Systems, vol. 14, no. 1, pp. 53-76, 2020. DOI: 10.3837/tiis.2020.01.004.
[ACM Style]
Huanan Yu, Yongxin Li, and Yao Du. 2020. Dynamic Synchronous Phasor Measurement Algorithm Based on Compressed Sensing. KSII Transactions on Internet and Information Systems, 14, 1, (2020), 53-76. DOI: 10.3837/tiis.2020.01.004.
[BibTeX Style]
@article{tiis:23220, title="Dynamic Synchronous Phasor Measurement Algorithm Based on Compressed Sensing", author="Huanan Yu and Yongxin Li and Yao Du and ", journal="KSII Transactions on Internet and Information Systems", DOI={10.3837/tiis.2020.01.004}, volume={14}, number={1}, year="2020", month={January}, pages={53-76}}