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2023 | OriginalPaper | Buchkapitel

Sliding Mode Control-Oriented Electric Spring for SEIG-Based Micro-Grid

verfasst von : Soumya Mohanty, Swagat Pati, Sanjeeb Kumar Kar, Janmajaya Gantayat

Erschienen in: Smart Technologies for Power and Green Energy

Verlag: Springer Nature Singapore

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Abstract

Alternative power production is an ongoing research area both for power industries and researcher that developed interest in renewable energy sources (RESs) from more than two decades. But the integration of RES to power system leads to voltage fluctuation, which is well known to the operators as an unpredictable natural behavior of RES. In the recent past, an emerging technology known as ‘Electric Spring’ (ES) has been developed to resolve voltage stabilization problem especially in distributed network. In this paper, a novel ‘in-phase control approach’ for ES with sliding mode controller (SMC) is proposed for a wind-driven self-excited induction generator (SEIG) centric standalone system. The suggested approach is validated using MATLAB/SIMULINK environment under load change condition, and it is found that the approach is proven to be effective for voltage restoration across critical load. In addition, active and reactive power exchange has been studied.

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Literatur
1.
Zurück zum Zitat P. Palensky, D. Dietrich, Demand side management: demand response, intelligent energy systems, and smart loads. IEEE Trans. Industr. Inf. 7(3), 381–388 (2011)CrossRef P. Palensky, D. Dietrich, Demand side management: demand response, intelligent energy systems, and smart loads. IEEE Trans. Industr. Inf. 7(3), 381–388 (2011)CrossRef
2.
Zurück zum Zitat S.Y. Hui, C.K. Lee, F.F. Wu, Electric springs—a new smart grid technology. IEEE Trans. Smart Grid 3(3), 1552–1561 (2012) S.Y. Hui, C.K. Lee, F.F. Wu, Electric springs—a new smart grid technology. IEEE Trans. Smart Grid 3(3), 1552–1561 (2012)
3.
Zurück zum Zitat D. Westermann, A. John, Demand matching wind power generation with wide-area measurement and demand-side management. IEEE Trans. Energy Convers. 22(1), 145–149 (2007)CrossRef D. Westermann, A. John, Demand matching wind power generation with wide-area measurement and demand-side management. IEEE Trans. Energy Convers. 22(1), 145–149 (2007)CrossRef
4.
Zurück zum Zitat C.K. Lee, S.Y. Hui, Reduction of energy storage requirements in future smart grid using electric springs. IEEE Trans. Smart Grid 4(3), 1282–1288 (2013) C.K. Lee, S.Y. Hui, Reduction of energy storage requirements in future smart grid using electric springs. IEEE Trans. Smart Grid 4(3), 1282–1288 (2013)
5.
Zurück zum Zitat C. K. Lee, B. Chaudhuri, S.Y. Hui, Hardware and control implementation of electric springs for stabilizing future smart grid with intermittent renewable energy sources. IEEE J. Emerg. Sel. Topics Power Electron. 1(1), 18–27 (2013) C. K. Lee, B. Chaudhuri, S.Y. Hui, Hardware and control implementation of electric springs for stabilizing future smart grid with intermittent renewable energy sources. IEEE J. Emerg. Sel. Topics Power Electron. 1(1), 18–27 (2013)
6.
Zurück zum Zitat C.K. Lee, et al., Droop control of distributed electric springs for stabilizing future power grid. IEEE Trans. Smart Grid 4(3), 1558–1566 (2013) C.K. Lee, et al., Droop control of distributed electric springs for stabilizing future power grid. IEEE Trans. Smart Grid 4(3), 1558–1566 (2013)
7.
Zurück zum Zitat X. Che, et al., A general comparative analysis of static synchronous compensator and electric spring, in 2014 IEEE Conference and Expo Transportation Electrification Asia-Pacific (ITEC Asia-Pacific). IEEE (2014) X. Che, et al., A general comparative analysis of static synchronous compensator and electric spring, in 2014 IEEE Conference and Expo Transportation Electrification Asia-Pacific (ITEC Asia-Pacific). IEEE (2014)
8.
Zurück zum Zitat S.-C. Tan, C.K. Lee, S.Y. Hui, General steady-state analysis and control principle of electric springs with active and reactive power compensations. IEEE Trans. Power Electron. 28(8), 3958–3969 (2012) S.-C. Tan, C.K. Lee, S.Y. Hui, General steady-state analysis and control principle of electric springs with active and reactive power compensations. IEEE Trans. Power Electron. 28(8), 3958–3969 (2012)
Metadaten
Titel
Sliding Mode Control-Oriented Electric Spring for SEIG-Based Micro-Grid
verfasst von
Soumya Mohanty
Swagat Pati
Sanjeeb Kumar Kar
Janmajaya Gantayat
Copyright-Jahr
2023
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-19-2764-5_37