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Nguyen, N. K., Flieller, D., Wira, P., Ould Abdeslam, D., Neural networks for phase and symmetrical components estimation in power systems, 35th Annual Conference of the IEEE Industrial Electronics Society (IECON09), Porto, Portugal, November 3-5, 2009, CD-ROM.

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Article

Power Systems Control Implementation Based on Two Dedicated FPGA Development Boards Using a Hard/soft Communication Interface

1Lab. d’Electronique, Electrotechnique, Automatique et de Télécommunication, L2EAT, University of Douala, Cameroon

2Lab. des sciences de l'Ingénieur, de l'Informatique et de l'Imagerie, ICUBE, University of Strasbourg, France


American Journal of Electrical and Electronic Engineering. 2017, Vol. 5 No. 3, 85-93
DOI: 10.12691/ajeee-5-3-3
Copyright © 2017 Science and Education Publishing

Cite this paper:
Serge Raoul Dzonde Naoussi, Charles Hubert Kom, Jean-Philippe Blonde. Power Systems Control Implementation Based on Two Dedicated FPGA Development Boards Using a Hard/soft Communication Interface. American Journal of Electrical and Electronic Engineering. 2017; 5(3):85-93. doi: 10.12691/ajeee-5-3-3.

Correspondence to: Serge  Raoul Dzonde Naoussi, Lab. d’Electronique, Electrotechnique, Automatique et de Télécommunication, L2EAT, University of Douala, Cameroon. Email: serge.dzonde@univ-douala.com

Abstract

This paper presents an unusual Field Programmable Gate Array (FPGA) development platform for power systems control. This platform is made up of two FPGA boards with a hardware and software communication interface. The one initially realized for direct torque Motor control is now dedicated for analog and digital signals input/output and the other card of much important density is specialized in data processing. A fully digital modules have been developed inside FPGAs from synthesis tools Quartus 2 and Maxplus 2, and a physical link have been realized to manage the communication between the cards. The control strategy takes advantage of the parallelism of the FPGA technology to share in real-time the controller’s information with its environment. Simulations and experimental results validate the feasibility of a simple handshaking communication protocol between both cards. On the other hand, with the proposed implementation solution it was shown a safe operation in a power grid switching station, a successful instantaneous frequency measurements used for grid synchronization and Active Power Filter control, followed by a production of Pulse Width Modulation (PWM) gating signals used for inverter in motor control and power quality applications.

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