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Model Predictive Control for Resonant Power Converters Applied to Induction Heating.

, , , and . ISIE, page 246-251. IEEE, (2018)

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Design and Evaluation of a Low-Cost High-Performance ΣΔ ADC for Embedded Control Systems in Induction Heating Appliances., , , , and . IEEE Trans. Industrial Electronics, 61 (5): 2601-2611 (2014)Implementation of an FPGA-Based Online Hardware-in-the-Loop Emulator Using High-Level Synthesis Tools for Resonant Power Converters Applied to Induction Heating Appliances., , , , , and . IEEE Trans. Industrial Electronics, 62 (4): 2206-2214 (2015)Ianus: An Adaptive FPGA Computer., , , , , , , , , and 10 other author(s). Computing in Science and Engineering, 8 (1): 41-49 (2006)Janus: An FPGA-Based System for High-Performance Scientific Computing., , , , , , , , , and 13 other author(s). Computing in Science and Engineering, 11 (1): 48-58 (2009)Analysis and Implementation of FPGA-Based Online Parametric Identification Algorithms for Resonant Power Converters., , , , and . IEEE Trans. Industrial Informatics, 10 (2): 1144-1153 (2014)Instruction issue system for superscalar processors., , and . PDP, page 108-115. IEEE Computer Society, (1997)Reduced-order model of a half-bridge series resonant inverter for power control in domestic induction heating applications., , , , , and . ICIT, page 2542-2547. IEEE, (2015)FPGA-Based Power Measuring for Induction Heating Appliances Using Sigma-Delta A/D Conversion., , , , , and . IEEE Trans. Industrial Electronics, 54 (4): 1843-1852 (2007)FPGA-based 2nd-order sigma-delta A/D converter for current measurement for resonant power converters., , , , , and . IECON, page 3061-3066. IEEE, (2012)Output voltage estimation of a half-bridge inverter for domestic induction heating applications., , , , , and . IECON, page 5081-5086. IEEE, (2019)