Numerical and experimental validation with bifurcation diagrams for a controlled DC–DC converter with quasi-sliding control

dc.creatorHoyos, Fredy E.
dc.creatorCandelo-Becerra, John E.
dc.creatorToro, Nicolás
dc.date2018-05-14
dc.date.accessioned2025-10-01T23:51:54Z
dc.descriptionThis paper presents a stability analysis of a buck converter using a Zero Average Dynamics (ZAD) controller and Fixed-Point Induction Control (FPIC) when the control parameteren-US
dc.descriptionEste artículo presenta un análisis de estabilidad del convertidor buck usando la técnica de control de promediado cero (ZAD) y el control por inducción de punto fijo (FPIC), cuando se cambian el parámetro de controles-ES
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dc.formattext/xml
dc.identifierhttps://revistas.itm.edu.co/index.php/tecnologicas/article/view/785
dc.identifier10.22430/22565337.785
dc.identifier.urihttps://hdl.handle.net/20.500.12622/7653
dc.languageeng
dc.publisherInstituto Tecnológico Metropolitano (ITM)es-ES
dc.relationhttps://revistas.itm.edu.co/index.php/tecnologicas/article/view/785/914
dc.relationhttps://revistas.itm.edu.co/index.php/tecnologicas/article/view/785/985
dc.relationhttps://revistas.itm.edu.co/index.php/tecnologicas/article/view/785/1206
dc.relationhttps://revistas.itm.edu.co/index.php/tecnologicas/article/view/785/1253
dc.relation/*ref*/F. Hoyos, J. Candelo, and J. Silva, “Performance evaluation of a DC-AC inverter controlled with ZAD-FPIC,” INGE CUC, vol. 14, no. 1, pp. 9–18, 2018.
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dc.relation/*ref*/F. Angulo, F. Hoyos, and G. Olivar, “Experimental results on the quantization in the ADC device for a ZAD-strategy controlled DC-DC buck converter,” in 7th European Nonlinear Dynamics Conference, 2011, pp. 1–6.
dc.relation/*ref*/Haitao Hu, V. Yousefzadeh, and D. Maksimovic, “Nonuniform A/D Quantization for Improved Dynamic Responses of Digitally Controlled DC-DC Converters,” IEEE Trans. Power Electron., vol. 23, no. 4, pp. 1998–2005, Jul. 2008.
dc.relation/*ref*/F. E. Hoyos, D. Burbano, F. Angulo, G. Olivar, N. Toro, and J. A. Taborda, “Effects of Quantization, Delay and Internal Resistances in Digitally ZAD-Controlled Buck Converter,” Int. J. Bifurc. Chaos, vol. 22, no. 10, p. 9, Oct. 2012.
dc.relation/*ref*/M. Algreer, M. Armstrong, and D. Giaouris, “Adaptive PD+I Control of a Switch-Mode DC–DC Power Converter Using a Recursive FIR Predictor,” IEEE Trans. Ind. Appl., vol. 47, no. 5, pp. 2135–2144, Sep. 2011.
dc.relation/*ref*/M. Shirazi, R. Zane, and D. Maksimovic, “An Autotuning Digital Controller for DC–DC Power Converters Based on Online Frequency-Response Measurement,” IEEE Trans. Power Electron., vol. 24, no. 11, pp. 2578–2588, Nov. 2009.
dc.relation/*ref*/C. W. Fung, C. P. Liu, and M. H. Pong, “A Diagrammatic Approach to Search for Minimum Sampling Frequency and Quantization Resolution for Digital Control of Power Converters,” in 2007 IEEE Power Electronics Specialists Conference, 2007, pp. 826–832.
dc.relation/*ref*/J. A. Taborda, F. Angulo, and G. Olivar, “Estimation of parameters in Buck converter with Digital-PWM control based on ZAD strategy,” in 2011 IEEE Second Latin American Symposium on Circuits and Systems (LASCAS), 2011, pp. 1–4.
dc.relation/*ref*/F. E. Hoyos Velasco, N. T. García, and Y. A. Garcés Gómez, “Adaptive Control for Buck Power Converter Using Fixed Point Inducting Control and Zero Average Dynamics Strategies,” Int. J. Bifurc. Chaos, vol. 25, no. 4, p. 13, Apr. 2015.
dc.relation/*ref*/E. Fossas, R. Griño, and D. Biel, “Quasi-Sliding control based on pulse width modulation, zero averaged dynamics and the L2 norm,” in Advances in Variable Structure Systems, 2000, pp. 335–344.
dc.relation/*ref*/S. Ashita, G. Uma, and P. Deivasundari, “Chaotic dynamics of a zero average dynamics controlled DC–DC Ćuk converter,” IET Power Electron., vol. 7, no. 2, pp. 289–298, Feb. 2014.
dc.relation/*ref*/F. Angulo, G. Olivar, J. Taborda, and F. Hoyos, “Nonsmooth dynamics and FPIC chaos control in a DC-DC ZAD-strategy power converter,” in ENOC, 2008, pp. 1–6.
dc.relation/*ref*/F. Angulo, J. E. Burgos, and G. Olivar, “Chaos stabilization with TDAS and FPIC in a buck converter controlled by lateral PWM and ZAD,” in 2007 Mediterranean Conference on Control & Automation, 2007, pp. 1–6.
dc.relation/*ref*/J. A. Taborda, S. Santini, M. di Bernardo, and F. Angulo, “Active Chaos Control of a Cam-Follower Impacting System using FPIC Technique*,” IFAC Proc. Vol., vol. 42, no. 7, pp. 327–332, 2009.
dc.relation/*ref*/D. G. Montoya, C. A. Ramos-Paja, and R. Giral, “Improved Design of Sliding-Mode Controllers Based on the Requirements of MPPT Techniques,” IEEE Trans. Power Electron., vol. 31, no. 1, pp. 235–247, Jan. 2016.
dc.sourceTecnoLógicas; Vol. 21 No. 42 (2018); 147-167en-US
dc.sourceTecnoLógicas; Vol. 21 Núm. 42 (2018); 147-167es-ES
dc.source2256-5337
dc.source0123-7799
dc.subjectDC–DC buck converteren-US
dc.subjectbifurcations in FPIC control parameteren-US
dc.subjectsliding controlen-US
dc.subjecttwo-dimensional bifurcationen-US
dc.subjectmicrogriden-US
dc.subjectelectrical networken-US
dc.subjectConvertidor reductor DC–DCes-ES
dc.subjectbifurcaciones en parámetro de control FPICes-ES
dc.subjectcontrol por modos deslizanteses-ES
dc.subjectbifurcaciones de codimensión doses-ES
dc.subjectmicro redes-ES
dc.subjectred eléctricaes-ES
dc.titleNumerical and experimental validation with bifurcation diagrams for a controlled DC–DC converter with quasi-sliding controlen-US
dc.titleValidación numérica y experimental mediante diagramas de bifurcaciones, para un convertidor DC–DC controlado con control cuasi-deslizantees-ES
dc.typeinfo:eu-repo/semantics/article
dc.typeinfo:eu-repo/semantics/publishedVersion
dc.typeResearch Papersen-US
dc.typeArtículos de investigaciónes-ES

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