2018 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM) 2018
DOI: 10.1109/speedam.2018.8445288
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Real Time Simulation of Photovoltaic System using FPGA

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Cited by 14 publications
(12 citation statements)
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“…The study of all these scenarios requires to perform rigorous tests before implementation that often cannot be done directly on the power network. The availability of virtual test benches, such as digital twins of the grid, can be an useful aid to perform forecasting and validation of algorithms and devices [3], [4]. The requirements of digital twins must be linked to their ability to interface real physical devices at signal or power level and to simulate the system in real…”
Section: Introductionmentioning
confidence: 99%
“…The study of all these scenarios requires to perform rigorous tests before implementation that often cannot be done directly on the power network. The availability of virtual test benches, such as digital twins of the grid, can be an useful aid to perform forecasting and validation of algorithms and devices [3], [4]. The requirements of digital twins must be linked to their ability to interface real physical devices at signal or power level and to simulate the system in real…”
Section: Introductionmentioning
confidence: 99%
“…If, on the other hand, P(k) decreases, a decrease in V(k) represents a decrease in D and an increase causes an increase in D. In Figure 5 the diagram of the PVS with the controller for the MPPT is presented. A similar system is used in [42].…”
Section: Maximum Power Point Tracking Controllermentioning
confidence: 99%
“…In [41], a distributed control for remote islanded microgrids (MGs) via cloud server was presented, in this research, a multiagent system was developed where the physical entity of islanded MGs was emulated at 50 µs time step on OPAL-RT. In [42], a platform of a PVS composed of a PVP, a DC-DC PEC and a P&O controller was implemented using an NI myRIO 1900 development board programmed in Matlab's Simulink using NI Veristand-this platform works 1 ms integration time. Study [43] uses HIL based on the RT-Lab platform to emulate a virtual synchronous photovoltaic generator, the platform used in this research can reproduce a simulation step every 20 µs.…”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…• Power Electronics • Multiprocessors/multicore architectures [19,[1057][1058][1059][1060][1061] • Neural biological systems [1062][1063][1064][1065] • Single even upsets (SEU) [1058,[1066][1067][1068][1069] • Photovoltaic systems [477,[1070][1071][1072][1073][1074][1075][1076][1077][1078] • Read-out detectors [1079][1080][1081] • Electrical machines [1082][1083][1084][1085][1086][1087][1088][1089] • Distribution grids [1090][1091][1092][1093][1094][1095] • Vehicles [1096][1097][1098][1099][1100][1101] • BPSK and QPS...…”
Section: Other Applicationsmentioning
confidence: 99%