Academic literature on the topic 'PWM power converters'

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Journal articles on the topic "PWM power converters"

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HUA, GUICHAO, and FRED C. LEE. "SOFT-SWITCHING PWM CONVERTER TECHNOLOGIES." Journal of Circuits, Systems and Computers 05, no. 04 (1995): 531–58. http://dx.doi.org/10.1142/s0218126695000333.

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The switched-mode power conversion technologies have evolved from the basic PWM converters to resonant converters, quasi-resonant converters, multi-resonant converters, and most recently, to soft-switching PWM converters. In this paper, several typical resonant techniques and several soft-switching PWM techniques are reviewed, and their merits and limitations are assessed. The resonant techniques reviewed include the quasi-resonant converters, multi-resonant converters, Class-E converters, and resonant dc link converters; and the soft-switching PWM techniques reviewed include the zero-voltage-
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Sidorov, Vadim, Andrii Chub, and Dmitri Vinnikov. "Performance Improvement of PWM Control Methods for Voltage Step-Down in Series Resonant DC–DC Converters." Energies 13, no. 17 (2020): 4569. http://dx.doi.org/10.3390/en13174569.

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The paper is focused on galvanically isolated series resonant DC–DC converters (SRCs) with a low quality factor of the resonant tank. These converters provide input voltage regulation at fixed switching frequency and good power density. Different modulation methods at the fixed switching frequency enable the implementation of the voltage buck functionality in these converters. The SRC under study is considered as a step-up front-end DC–DC converter for the integration of renewable energy sources in DC microgrids. The paper evaluates the voltage buck performance of the SRC achieved by using dif
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Aguemon, Dourodjayé Pierre, Richard Gilles Agbokpanzo, and Frédéric Dubas. "Analysis on the Topology and Control of Power Electronics Converters for Wind Energy Conversion Systems." International Journal of Research and Review 8, no. 8 (2021): 127–37. http://dx.doi.org/10.52403/ijrr.20210819.

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Power Electronics converters become nowadays the most important part in Wind Energy Conversion Systems (WECS). They are an intermediate between the generator and grid to achieve low cost, high power density and reliability. This paper deals with the analysis on the topology and control of the most power Electronics Converters for generators using in WECS. Design, (dis)advantages, and market penetration are analyzed and discussed. The control includes maximum power point tracking, dc bus voltage control, balancing of the dc capacitor voltages, and reactive power generation are also analyzed. Si
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Shakweh, Y. "Power devices for medium voltage PWM converters." Power Engineering Journal 13, no. 6 (1999): 297–307. http://dx.doi.org/10.1049/pe:19990609.

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Ren, Jiaqi. "A Nonisolated Multiport Converter Based on LLC and Bidirectional Buck/Boost for Low Power EH-Battery Systems." CPSS Transactions on Power Electronics and Applications 7, no. 2 (2022): 196–205. http://dx.doi.org/10.24295/cpsstpea.2022.00018.

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Concerning about integration and high efficiency of topology, nonisolated multiport converters are widely researched in low power Energy-Harvesting-battery (EH-battery) systems. However, the pulse width modulation (PWM) based nonisolated multiport converters usually have the shortages of larger number of switches, ports’ voltage restrictions, hard switching, time-sharing transmission of energy and poor compatibility of MPPT algorithms. Therefore, in this article, a transformer-less multiport converter based on LLC and bidirectional buck/boost converter is proposed, which has the ability to ste
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Matalata, Hendi, and Leily W. Johar. "ANALISA BUCK CONVERTER DAN BOOST CONVERTER PADA PERUBAHAN DUTY CYCLE PWM DENGAN MEMBANDINGKAN FREKUENSI PWM 1,7 Khz DAN 3,3 Khz." Jurnal Ilmiah Universitas Batanghari Jambi 18, no. 1 (2018): 42. http://dx.doi.org/10.33087/jiubj.v18i1.431.

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Buck-Boost Converters are electric power supply device for raising and lowering the voltage DC (Direct Current) power supply equipment according to needs of the electrical load, this research is designed to Buck-Boost Converter and Converter on the 12 Volt power supply, the design of a Buck Converter power supply derived 5 Volt, 6Volt and 6 Volt design while the Boost Converter power supply 12 Volt offered up to 16 Volt, 19 Volt and 22 Volts in a way set the duty cycle of PWM frequency settings in 1.7 Khz and 3.3 Khz. Results research indicates the State of the differences in each frequency in
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Kumar, Akhilesh, Pradip K. Sadhu, and Jay Singh. "Implementation and Comparative Analysis of Time Equivalent Space Vector PWM Method for 3 Phase to 3 Phase Matrix Converter." Journal Européen des Systèmes Automatisés​ 54, no. 4 (2021): 617–22. http://dx.doi.org/10.18280/jesa.540411.

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Nowadays, the matrix converter (MC) has become the prominent power converter. Its unique qualities like single-stage ac to ac conversion, bidirectional power flow, sinusoidal response, unity power factor, and no need for dc-link makes it superior among all power converters. This archival literature investigates the various pulse width modulation (PWM) methods and proposed a novel pulse width modulation (PWM) method named Time Equivalent space vector pulse width modulation. In this article this novel modulation method is compared with exiting carrier-based pulse width control and space vector c
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He, Yi Hong, and Shui Yong Yu. "Research on a New Type of Plating Power Supply." Applied Mechanics and Materials 513-517 (February 2014): 3518–21. http://dx.doi.org/10.4028/www.scientific.net/amm.513-517.3518.

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Viewing the problems of lower power factor, high harmonic content, lots of switch losses in tubes of lagging bridge arm when using FB-ZVS-PWM converter in plating power supply, this paper applied the three-level PWM rectifier technology to electroplating power supply, A new converter has been researched. Both different converters have also been compared and analyzed. Phase shift pulse generator and simulation models have been established in Matlab/Simulink. The results show that the PS-FB-ZVZCS PWM converter is more suitable for plating power supply, phases of current and voltage are synchrono
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Hasan, Khairul Nisak Md, Aida Syafiqah Ahmad, and Zainul Azhar Zakaria. "Interleaved 4-Phases DC/DC Converter for Electric Scooter to Improve Efficiency." MATEC Web of Conferences 225 (2018): 03013. http://dx.doi.org/10.1051/matecconf/201822503013.

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This paper presents the design of an Interleaved DC/DC Boost Converter for the implementation of an Electric Scooter. The output of the power converter can be controlled using the Pulse Width Modulation (PWM) switching technique to boost 12V battery supply to power a 24V Brushed DC Motor with improved efficiency compared to conventional converters. The design of the power converter was calculated for different number of interleaving phases. The simulation is carried out using MATLAB/Simulink for 2, 3, 4, 6 and 8-phases interleaved converters to compare their performances. The 4-phase is select
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Li, Zhong Qun, Kai Xie, Ying Hao Ye, Rong Bin Guo, and Xu Fei Wang. "Reconstruct the PWM Signal of Switching Power Supplies from the Near Field Radiation." Advanced Materials Research 718-720 (July 2013): 1792–96. http://dx.doi.org/10.4028/www.scientific.net/amr.718-720.1792.

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A non-contact testing method is proposed for encapsulation treated or insulation coated switching power supplies, which is implemented by reconstructing the pulse width modulation (PWM) signal of switching converters from the near field radiation of magnetic components. The radiation pattern of a buck converter is investigated, and the magnetic field sensing probe and PWM signal reconstruction circuit are also illustrated. The reconstruction testing is carried out on a buck converter; the duty cycle error of the reconstructed PWM signal is less than 0.2%, which validates the proposed method.
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Dissertations / Theses on the topic "PWM power converters"

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Mao, Hengchun. "Soft-switching techniques for high-power PWM converters." Diss., This resource online, 1996. http://scholar.lib.vt.edu/theses/available/etd-10052007-143055/.

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Yu, Ruiyang, and 余睿阳. "Design optimization of off-line power converters: from PWM to LLC resonant converteres." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2012. http://hub.hku.hk/bib/B49799642.

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High power conversion efficiency is desirable in power supplies. Design optimization of on-line power converter is presented in this thesis. High efficiencies over a wide load range, for example 20%, 50% and 100% load, are often required. It is a challenge for on-line pulse-width modulation (PWM) converters to maintain good efficiencies with light load as well as full load. A two-stage multi-objective optimization procedure is proposed to optimization power converter efficiencies at 20%, 50% and 100% load. Two-FET forward prototype converters are built to verify the optimization results. Th
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Sadler, Peter Andrew. "Harmonic elimination and voltage control in three phase AC power converters." Thesis, Manchester Metropolitan University, 1999. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.285285.

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Vlatkovic, Vlatko. "Three-phase power conversion using soft-switching PWM techniques." Diss., Virginia Tech, 1994. http://hdl.handle.net/10919/40059.

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This dissertation addresses several key issues related to high-frequency soft-switching PWM three-phase power converters. These are: 1. Analysis, synthesis, and design of three-phase soft-switching PWM power converter topologies 2. Design of input EMI filters for three-phase converters 3. Design of microprocessor controllers for three-phase converters. An analysis of existing soft-switching PWM techniques is performed, and two generalized soft-switching PWM converter circuit representations are derived. Based on these representations and common topological properties of three-p
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Pou, Félix Josep. "Modulation and control of three-phase PWM multilevel converters." Doctoral thesis, Universitat Politècnica de Catalunya, 2002. http://hdl.handle.net/10803/6327.

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La present tesi doctoral estudia els inversors trifàsics multinivell del tipus denominat de díodes de fixació (diode-clamped converters). Aquests convertidors poden generar tres o més nivells de tensió a cada fase de sortida, i normalment s'apliquen a sistemes de gran potència ja que poden treballar amb tensions majors que els inversors clàssics. L'anàlisi es centra fonamentalment en la topologia de tres nivells, tot i que també es realitzen contribucions per a convertidors de més nivells. Els principals objectius són la proposta de nous algorismes de modulació vectorial PWM de processat ràpid
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Motto, Kevin. "Application of High-Power Snubberless Semiconductor Switches in High-Frequency PWM Converters." Thesis, Virginia Tech, 2000. http://hdl.handle.net/10919/35778.

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For many years, power electronics in the high-power area was performed with extremely slow semiconductor switches. These switches, including the thyristor and the Gate Turn-Off (GTO) thyristor, had the capacity to handle very high voltages and currents but lacked the ability to perform high frequency switching. Low-power converters, such as computer power supplies and low horsepower motor drives, have employed high-frequency switching for years and have benefited from very nice output waveforms, good control dynamic performance, and many other advantages compared to low frequency switching.
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Zhu, Guangyong. "Dynamic modeling of pwm and single-switch single-stage power factor correction converters." Doctoral diss., University of Central Florida, 1999. http://digital.library.ucf.edu/cdm/ref/collection/RTD/id/3925.

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University of Central Florida College of Engineering Thesis<br>The concept of averaging has been used extensively in the modeling of power electronic circuits to overcome their inherent time-variant nature. Among various methods, the PWM switch modeling approach is most widely accepted in the study of closed-loop stability and transient response because of its accuracy and simplicity. However, a non-ideal PWM switch model considering conduction losses is not available except for converters operating in continuous conduction mode (CCM) and under small ripple conditions. Modeling of conductor lo
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Lee, John C. "Magamp post-regulator applied to a quasi-resonant converter and magamp operation under extreme load condition in a PWM converter." Thesis, This resource online, 1988. http://scholar.lib.vt.edu/theses/available/etd-11072008-063123/.

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Shoubaki, Ehab. "UNIFIED LARGE AND SMALL SIGNAL STATE-SPACE BASED MODELING AND SYMBOLIC SIMULATION FOR PWM CONVERTERS." Doctoral diss., University of Central Florida, 2009. http://digital.library.ucf.edu/cdm/ref/collection/ETD/id/3960.

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In this Dissertation, which concentrates on discrete modeling for control purposes of DC/DC converters and simulation through symbolic techniques. A Unified Discrete State-Space Model for power converters in CCM is presented. Two main approaches to arriving at the discrete model are used. The first approach involves an impulse function approximation of the duty cycle modulation of the converter switches, and this approach results in a small signal discrete model. The Second approach is direct and does not involve any approximation of the modulation, this approach yields both a large signal non
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Yu, Huijie. "Driver Based Soft Switch for Pulse-Width-Modulated Power Converters." Diss., Virginia Tech, 2005. http://hdl.handle.net/10919/26399.

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The work in this dissertation presents the first attempt in the literature to propose the concept of â soft switchâ . The goal of â soft switchâ is to develop a standard PWM switch cell with built-in adaptive soft switching capabilities. Just like a regular switch, only one PWM signal is needed to drive the soft switch under soft switching condition. The core technique in soft switch development is a built-in adaptive soft switching circuit with minimized circulation energy. The necessity of minimizing circulation energy is first analyzed. The design and implementation of a universal con
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Books on the topic "PWM power converters"

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Monmasson, Eric. Power electronic converters: PWM strategies and current control techniques. ISTE, 2011.

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Kazimierczuk, Marian K. Pulse-width modulated DC-DC power converters. John Wiley & Sons Inc., 2015.

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Kazimierczuk, Marian. Pulse-width modulated DC-DC power converters. Wiley, 2008.

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Pulse width modulated (PWM) power supplies. Elsevier, 1993.

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K, Kokula Krishna Hari, ed. Variable Frequency Digital PWM Control for Low-Power Buck Converters. Association of Scientists, Developers and Faculties, 2016.

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Pulse width modulation for power converters: Principles and practice. Wiley-Interscience, 2003.

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PWM denryoku henkan shisutemu: Pawā erekutoronikusu no kiso. Kyōritsu Shuppan, 2007.

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Wu, Keng C. Pulse width modulated DC/DC converters. Chapman & Hall, 1997.

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Santos, Euzeli dos, and Edison R. da Silva. Advanced Power Electronics Converters: PWM Converters Processing AC Voltages. Wiley & Sons, Incorporated, John, 2014.

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Santos, Euzeli dos, and Edison R. da Silva. Advanced Power Electronics Converters: PWM Converters Processing AC Voltages. Wiley-Interscience, 2014.

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Book chapters on the topic "PWM power converters"

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Dokić, Branko L., and Branko Blanuša. "PWM DC/DC Converters." In Power Electronics. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-09402-1_4.

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Meynard, Thierry, and Guillaume Gateau. "PWM Strategies for Multilevel Converters." In Power Electronic Converters. John Wiley & Sons, Inc., 2013. http://dx.doi.org/10.1002/9781118621196.ch9.

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Chen, Wen-Wei, and Jiann-Fuh Chen. "Review of the PWM Control Circuits for Power Converters." In Power Systems. Springer Singapore, 2017. http://dx.doi.org/10.1007/978-981-10-7004-4_2.

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Amalrajan, R., R. Gunabalan, and Nilanjan Tewari. "DSPACE1103 Controller for PWM Control of Power Electronic Converters." In Lecture Notes in Electrical Engineering. Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-7245-6_24.

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Jiang, Dong, Zewei Shen, Qiao Li, Jianan Chen, and Zicheng Liu. "Advanced PWM Strategies for Complicated Topologies." In Advanced Pulse-Width-Modulation: With Freedom to Optimize Power Electronics Converters. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-33-4385-6_6.

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Chen, Yanfeng, and Bo Zhang. "Stability Analysis of PWM Power Switching Converters Based on ESPM." In Equivalent-Small-Parameter Analysis of DC/DC Switched-Mode Converter. Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-13-2574-8_9.

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Jiang, Dong, Zewei Shen, Qiao Li, Jianan Chen, and Zicheng Liu. "Software and Hardware Implementation of Advanced PWM." In Advanced Pulse-Width-Modulation: With Freedom to Optimize Power Electronics Converters. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-33-4385-6_8.

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Jiang, Dong, Zewei Shen, Qiao Li, Jianan Chen, and Zicheng Liu. "PWM Technology for Common-Mode Noise Reduction." In Advanced Pulse-Width-Modulation: With Freedom to Optimize Power Electronics Converters. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-33-4385-6_7.

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Han, Yang. "Controller Synthesis and Parameter Selection for Standalone Single-Phase PWM Inverters." In Modeling and Control of Power Electronic Converters for Microgrid Applications. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-74513-4_3.

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Javed, Khalid, Lieven Vandevelde, and Frederik De Belie. "A Novel Current Control Scheme for Grid-Connected Single-Phase PWM Bridgeless Power Converters." In Proceedings of Seventh International Congress on Information and Communication Technology. Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-1607-6_14.

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Conference papers on the topic "PWM power converters"

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Wu, Tsai-Fu, and Yu-Kai Chen. "Decoding the PWM converters." In 2014 IEEE International Power Electronics and Application Conference and Exposition (PEAC). IEEE, 2014. http://dx.doi.org/10.1109/peac.2014.7037858.

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"PWM methods multilevel converters." In 2004 IEEE 35th Annual Power Electronics Specialists Conference (IEEE Cat. No.04CH37551). IEEE, 2004. http://dx.doi.org/10.1109/pesc.2004.1354741.

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Ngo, Khai D. T. "Low-frequency characterization of PWM converters." In 1985 IEEE Power Electronics Specialists Conference. IEEE, 1985. http://dx.doi.org/10.1109/pesc.1985.7070946.

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Ngo, Khai D. T., Alex Phipps, Toshikazu Nishida, Jenshan Lin, and Shengwen Xu. "Power Converters for Piezoelectric Energy Extraction." In ASME 2006 International Mechanical Engineering Congress and Exposition. ASMEDC, 2006. http://dx.doi.org/10.1115/imece2006-14343.

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Passive circuits and active circuits (i.e., switched-mode power converters) for vibration-energy harvesting are reviewed, focusing on power-extraction efficiency (PEE). Optimal battery voltage and resistance are given for maximal power extraction by passive circuits. Switched-mode converters are reviewed as means to match the actual battery voltage or load resistance to the optimal ones. To emulate the optimal battery voltage or load resistor, these converters could be controlled by pulse-width modulation (PWM) or by resonance, could operate in continuous or discontinuous conduction modes (CCM
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Agnihotri, Prashant, Naima Kaabouch, Hossein Salehfar, and Wen-Chen Hu. "FPGA-based combined PWM-PFM technique to control DC-DC converters." In 2010 North American Power Symposium (NAPS 2010). IEEE, 2010. http://dx.doi.org/10.1109/naps.2010.5619964.

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Kiatsookkanatorn, Paiboon, and Somboon Sangwongwanich. "A unified PWM strategy for matrix converters and its dipolar PWM realization." In 2010 International Power Electronics Conference (IPEC - Sapporo). IEEE, 2010. http://dx.doi.org/10.1109/ipec.2010.5543770.

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Norris, Mark, Lazaro Marco Platon, Eduard Alarcon, and Dragan Maksimovic. "Quantization noise shaping in digital PWM converters." In 2008 IEEE Power Electronics Specialists Conference - PESC 2008. IEEE, 2008. http://dx.doi.org/10.1109/pesc.2008.4591912.

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Xu, Zhi-Wei, Zhi-Liang Zhang, Ke Xu, Zhou Dong, and Xiaoyong Ren. "2-MHz GaN PWM isolated SEPIC converters." In 2017 IEEE Applied Power Electronics Conference and Exposition (APEC). IEEE, 2017. http://dx.doi.org/10.1109/apec.2017.7930686.

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Santra, Subhendu Bikash, Krishnatreya Bhattacharya, Tanmoy Roy Chudhury, and Debashis Chatterjee. "Generation of PWM Schemes for Power Electronic Converters." In 2018 20th National Power Systems Conference (NPSC). IEEE, 2018. http://dx.doi.org/10.1109/npsc.2018.8771819.

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Kuo, M. H., and K. D. T. Ngo. "Modeling and simulation of PWM DC-DC converters." In 1986 IEEE Applied Power Electronics Conference and Exposition. IEEE, 1986. http://dx.doi.org/10.1109/apec.1986.7073337.

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Reports on the topic "PWM power converters"

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Fang, Chung-Chieh, and Eyad H. Abed. Sampled-Data Modeling and Analysis of the Power Stage of PWM DC-DC Converters. Defense Technical Information Center, 1999. http://dx.doi.org/10.21236/ada438683.

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Fang, Chung-Chieh, and Eyad H. Abed. Sampled-Data Modeling and Analysis of PWM DC-DC Converters Part 2. The Power Stage. Defense Technical Information Center, 1998. http://dx.doi.org/10.21236/ada438678.

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