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access icon openaccess Parameter identification of subsynchronous oscillation based on FastICA and MP algorithms

The online identification of subsynchronous oscillation (SSO) became possible with a wide application of wide area measurement system. However, there is more power electronic equipment in the power system. So, there are strong interference noises in the sampled signal, and the veracity of vibration modal parameters is influenced. The fast independent component analysis (FastICA) could separate noise signal from the observed signal. This study presented the pretreatment of sampling signal through the FastICA and the identification of the SSO parameter through matrix pencil (MP). The recognition accuracy could be enhanced based on FastICA–MP. This study sets the ideal example and the IEEE first benchmark model as the simulation examples. The simulation results show that the FastICA could separate noise signal effectively, and the MP identification accuracy is improved. The research result lays the foundations for the design of supplementary subsynchronous damping controller.

References

    1. 1)
      • 16. Miao, Y., Luo, W., Liu, Z., et al: ‘Power system low frequency oscillation online identification base on CCF-MP’, Proc. CSU-EPSA, 2015, 27, (12), pp. 97102.
    2. 2)
      • 15. Peng, L., Wei, H., Liu, G., et al: ‘Detection of subsynchronous resonance caused by series capacitive compensation based on improved Prony’, Proc. CSU-EPSA, 2015, SI, pp. 6367.
    3. 3)
      • 11. Huffel, S.V.: ‘Enhanced resolution based on minimum variance estimation and exponential data modeling’. Signal Process., 1993, 33, (3), pp. 333355.
    4. 4)
      • 9. Shi, J., Wen, Y., Guo, C., et al: ‘Power grid risk-based static security assessment considering corrective control strategy of FACTS devices’, Power Syst. Technol., 2015, 39, (9), pp. 25662570.
    5. 5)
      • 8. Shao, Y., Tang, F., Liu, D., et al: ‘An approach of transient angle stability assessment in power system for WAMS measured data’, Power Syst. Prot. Control, 2015, 43, (6), pp. 3339.
    6. 6)
      • 13. Sanchez-Gasca, J.J., Chow, J.H.: ‘Performance comparison of three identification methods for the analysis of electromechanical oscillations’, IEEE Trans. Power Syst., 1999, 14, (3), pp. 9951002.
    7. 7)
      • 14. Hua, Y., Sarker, T.K.: ‘On SVD for estimating generalized eigenvalues of singular matrix pencil in noise’, IEEE Trans. Signal Process., 1991, 39, (4), pp. 892900.
    8. 8)
      • 7. Shi, B., Li, S., Mei, H., et al: ‘Research on the SSO restraining of hybrid system containing LCC-HVDC and VSC-HVDC’, Power Syst. Prot. Control, 2016, 44, (20), pp. 113118.
    9. 9)
      • 4. Lu, D., Wang, Y., Wang, Z., et al: ‘Inverter maximum alpha control in UHVDC transmission with hierarchical connection mode’, Proc. CSEE, 2016, 36, (7), pp. 18081816.
    10. 10)
      • 3. Wang, H., Lin, Z., Zhang, H., et al: ‘Fault analysis of ±800 kV UHVDC transmission converter valve and optimal design method’, High Volt. Eng., 2017, 4, (1), pp. 6773.
    11. 11)
      • 1. Zhou, G., Gu, Y., Zhou, J., et al: ‘Analysis of noncharacteristic harmonic in UHVDC system’, Power Syst. Prot. Control, 2016, 44, (3), pp. 122128.
    12. 12)
      • 6. Zhang, P., Bi, T.: ‘Mechanism analysis of large disturbance risk of subsynchronous’, Proc. CSEE, 2016, 36, (4), pp. 961968.
    13. 13)
      • 12. Liu, Y., Tian, Y.: ‘Parameter identification of structures based on stochastic subspace and its validation in shaking table testing’, Earthq. Eng. Eng. Dyn., 2004, 24, (2), pp. 111117.
    14. 14)
      • 10. Trudnowski, D.J.: ‘Making PRONY analysis more accurate using multiple signals’, IEEE Trans. Power Syst., 1999, 14, (1), pp. 226231.
    15. 15)
      • 5. Wang, K., Xu, Z., Du, N., et al: ‘Research on shaft subsynchronous oscillation characteristic of parallel generators and SSDC application in mitigating SSO of multi-generator system’, High Volt. Eng., 2016, 42, (1), pp. 321329.
    16. 16)
      • 2. Fu, R., Sun, W., Tang, Y., et al: ‘Steady-state characteristics of UHVDC hierarchical connection mode’, Electr. Power Autom. Equip., 2017, 1, pp. 8186.
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