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2020 | OriginalPaper | Chapter

Modelling of Photovoltaic Systems for Real-Time Hardware Simulation

Authors : Harshavardhan Palahalli, Yujia Huo, Giambattista Gruosso

Published in: ELECTRIMACS 2019

Publisher: Springer International Publishing

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Abstract

The real-time simulation is a valid help to test electrical systems when a physical device is not available. This is significantly evident when used in hardware and software co-simulation environment, where it is possible to connect the emulator to a real subsystem to test or validate it. In this paper, a model of the photovoltaic system is presented that can be implemented within a hardware simulator to be able to interface it with a real circuit, the hardware simulator used is the National Instruments RIO system.

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Literature
1.
go back to reference Y. Huo, G. Gruosso, L. Piegari, Power hardware in the loop simulator of photovoltaic plant for smart grid interation analysis, in 2017 IEEE International Conference on Environment and Electrical Engineering and 2017 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I CPS Europe), June, pp. 1–5 Y. Huo, G. Gruosso, L. Piegari, Power hardware in the loop simulator of photovoltaic plant for smart grid interation analysis, in 2017 IEEE International Conference on Environment and Electrical Engineering and 2017 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I CPS Europe), June, pp. 1–5
2.
go back to reference M.D. Omar Faruque, T. Strasser, G. Lauss, V. Jalili-Marandi, P. Forsyth, C. Dufour, V. Dinavahi, A. Monti, P. Kotsampopoulos, J.A. Martinez et al. Real-time simulation technologies for power systems design, testing, and analysis. IEEE Power Energy Technol. Syst. J. 2(2), 63–73 (2015)ADSCrossRef M.D. Omar Faruque, T. Strasser, G. Lauss, V. Jalili-Marandi, P. Forsyth, C. Dufour, V. Dinavahi, A. Monti, P. Kotsampopoulos, J.A. Martinez et al. Real-time simulation technologies for power systems design, testing, and analysis. IEEE Power Energy Technol. Syst. J. 2(2), 63–73 (2015)ADSCrossRef
3.
go back to reference A. Ingalalli, H. Satheesh, M. Kande, Platform for hardware in loop simulation, in 2016 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM) (IEEE, New York, 2016), pp. 41–46 A. Ingalalli, H. Satheesh, M. Kande, Platform for hardware in loop simulation, in 2016 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM) (IEEE, New York, 2016), pp. 41–46
4.
go back to reference W. Li, G. Joós, J. Bélanger, Real-time simulation of a wind turbine generator coupled with a battery supercapacitor energy storage system. IEEE Trans. Ind. Electron. 57(4), 1137–1145 (2010)CrossRef W. Li, G. Joós, J. Bélanger, Real-time simulation of a wind turbine generator coupled with a battery supercapacitor energy storage system. IEEE Trans. Ind. Electron. 57(4), 1137–1145 (2010)CrossRef
5.
go back to reference P.M. Menghal, A. Jaya Laxmi, Real time control of electrical machine drives: a review, in 2010 International Conference on Power, Control and Embedded Systems (ICPCES) (IEEE, New York, 2010), pp. 1–6 P.M. Menghal, A. Jaya Laxmi, Real time control of electrical machine drives: a review, in 2010 International Conference on Power, Control and Embedded Systems (ICPCES) (IEEE, New York, 2010), pp. 1–6
6.
go back to reference B.L. Schenkman, D.G. Wilson, R.D. Robinett, Photovoltaic distributed generation for lanai power grid real-time simulation and control integration scenario, in 2010 International Symposium on Power Electronics Electrical Drives Automation and Motion (SPEEDAM) (IEEE, New York, 2010), pp. 154–157 B.L. Schenkman, D.G. Wilson, R.D. Robinett, Photovoltaic distributed generation for lanai power grid real-time simulation and control integration scenario, in 2010 International Symposium on Power Electronics Electrical Drives Automation and Motion (SPEEDAM) (IEEE, New York, 2010), pp. 154–157
7.
go back to reference M. Dagbagi, L. Idkhajine, E. Monmasson, I. Slama-Belkhodja, FPGA implementation of power electronic converter real-time model, in 2012 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM) (IEEE, New York, 2012), pp. 658–663 M. Dagbagi, L. Idkhajine, E. Monmasson, I. Slama-Belkhodja, FPGA implementation of power electronic converter real-time model, in 2012 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM) (IEEE, New York, 2012), pp. 658–663
8.
go back to reference J.V. Paatero, P.D. Lund, Effects of large-scale photovoltaic power integration on electricity distribution networks. Renew. Energy 32(2), 216–234 (2007)CrossRef J.V. Paatero, P.D. Lund, Effects of large-scale photovoltaic power integration on electricity distribution networks. Renew. Energy 32(2), 216–234 (2007)CrossRef
11.
go back to reference F. Bizzarri, A. Brambilla, G. Gruosso, C. Guardiani, A. Sangiovanni Vincentelli, G. Storti Gajani, Modeling and estimating yield and efficiency of photovoltaic solar parks, in 2013 IEEE International Conference on Industrial Technology (ICIT) (2013), pp. 734–739 F. Bizzarri, A. Brambilla, G. Gruosso, C. Guardiani, A. Sangiovanni Vincentelli, G. Storti Gajani, Modeling and estimating yield and efficiency of photovoltaic solar parks, in 2013 IEEE International Conference on Industrial Technology (ICIT) (2013), pp. 734–739
12.
go back to reference F. Bizzarri, M. Bongiorno, A. Brambilla, G. Gruosso, G.S. Gajani, Model of photovoltaic power plants for performance analysis and production forecast. IEEE Trans. Sustain. Energy 4(2), 278–285 (2013)ADSCrossRef F. Bizzarri, M. Bongiorno, A. Brambilla, G. Gruosso, G.S. Gajani, Model of photovoltaic power plants for performance analysis and production forecast. IEEE Trans. Sustain. Energy 4(2), 278–285 (2013)ADSCrossRef
13.
go back to reference S. Sumathi, L. Ashok Kumar, P. Surekha, Application of MATLAB/SIMULINK in solar PV systems, in Solar PV and Wind Energy Conversion Systems (Springer, New York, 2015), pp. 59–143 S. Sumathi, L. Ashok Kumar, P. Surekha, Application of MATLAB/SIMULINK in solar PV systems, in Solar PV and Wind Energy Conversion Systems (Springer, New York, 2015), pp. 59–143
14.
go back to reference M. Pisano, F. Bizzarri, A. Brambilla, G. Gruosso, G.S. Gajani, Micro-inverter for solar power generation, in International Symposium on Power Electronics Power Electronics, Electrical Drives, Automation and Motion, June (2012), pp. 109–113 M. Pisano, F. Bizzarri, A. Brambilla, G. Gruosso, G.S. Gajani, Micro-inverter for solar power generation, in International Symposium on Power Electronics Power Electronics, Electrical Drives, Automation and Motion, June (2012), pp. 109–113
Metadata
Title
Modelling of Photovoltaic Systems for Real-Time Hardware Simulation
Authors
Harshavardhan Palahalli
Yujia Huo
Giambattista Gruosso
Copyright Year
2020
DOI
https://doi.org/10.1007/978-3-030-37161-6_1

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