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1

Bausière, R. Power electronic converters: DC-DC conversion. Berlin: Springer-Verlag, 1992.

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2

Choi, Byungcho. Pulsewidth Modulated Dc-to-Dc Power Conversion. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2013. http://dx.doi.org/10.1002/9781118772188.

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3

Séguier, Guy. Power electronic converters: AC-DC conversion. New York: McGraw-Hill, 1986.

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4

Seguier, Guy. Power electronic converters: AC-DC conversion. London: North Oxford Academic, 1986.

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5

Séguier, Guy. Power electronic converters: DC-AC conversion. Berlin: Springer-Verlag, 1993.

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6

Séguier, Guy. Power Electronic Converters: DC-AC Conversion. Berlin, Heidelberg: Springer Berlin Heidelberg, 1993.

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7

Intersociety Energy Conversion Engineering Conference (37th 2002 Washington, D.C.). 2002 37th Intersociety Energy Conversion Engineering Conference (IECEC): July 29-31, 2002, Washington, DC. Piscataway, N.J: Institute of Electrical and Electronics Engineers, 2002.

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8

Intersociety Energy Conversion Engineering Conference (31st 1996 Washington, D.C.). Proceedings of the 31st Intersociety Energy Conversion Engineering Conference: August 11-16, 1996, Washington, DC. Piscataway, NJ: IEEE, 1996.

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9

Karamat, Asghar. High frequency inverter-transformer-cycloconverter system for DC to AC (3-phase) power conversion. Uxbridge: Brunel University, 1991.

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10

Prohorov, Viktor. Semiconductor converters of electrical energy. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1019082.

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The textbook considers the need, principles and methods of mutual conversion of parameters of electric energy at DC and AC for stationary and Autonomous objects. Features of operation of power electronics elements in specific conditions of their continuous high-frequency switching are described. Low-current control systems that provide the necessary logic for the operation of Executive power devices of converters are considered. A large number of specific practical electrical diagrams of electric energy converters are given. It is intended for students studying in the direction of 13.03.02 "electric power and electrical engineering". It can be useful for graduate students and specialists involved in the development and operation of electric power converters.
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11

Bausiere, Robert, Guy Seguier, and Francis Labrique. Power Electronic Converters: DC-DC Conversion. Springer London, Limited, 2013.

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12

Bausiere, Robert, Guy Seguier, and Francis Labrique. Power Electronic Converters: DC-DC Conversion. Springer London, Limited, 2013.

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13

DC-DC Power Conversion With Galvanic Isolation. Storming Media, 2003.

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14

Power Electronics and Energy Conversion Systems, AC / DC and DC / AC Power Conversion. Wiley & Sons, Incorporated, John, 2021.

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15

Choi, Byungcho. Pulsewidth Modulated Dc-To-Dc Power Conversion: Circuits, Dynamics, Control, and Dc Power Distribution Systems. Wiley & Sons, Incorporated, John, 2021.

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16

Choi, Byungcho. Pulsewidth Modulated Dc-To-Dc Power Conversion: Circuits, Dynamics, Control, and Dc Power Distribution Systems. Wiley & Sons, Incorporated, John, 2021.

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17

Choi, Byungcho. Pulsewidth Modulated Dc-To-Dc Power Conversion: Circuits, Dynamics, Control, and Dc Power Distribution Systems. Wiley & Sons, Limited, John, 2021.

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18

Choi, Byungcho. Pulsewidth Modulated Dc-To-Dc Power Conversion: Circuits, Dynamics, Control, and Dc Power Distribution Systems. Wiley & Sons, Incorporated, John, 2021.

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19

Choi, Byungcho. Pulsewidth Modulated DC-To-DC Power Conversion: Circuits, Dynamics, and Control Designs. Wiley & Sons, Incorporated, John, 2013.

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20

Choi, Byungcho. Pulsewidth Modulated DC-To-DC Power Conversion: Circuits, Dynamics, and Control Designs. Wiley & Sons, Incorporated, John, 2013.

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21

Pulsewidth Modulated Dctodc Power Conversion IEEE Press Series on Power Engineering. John Wiley & Sons Inc, 2013.

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22

Wolf, E. L. Energy Storage, Distribution, Use and Climate Impact. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198769804.003.0011.

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The large-scale energy grid often comprises both AC and DC transmission lines. DC transmission at ultrahigh voltages is more efficient, but consumers need AC at lower voltage so that AC/DC conversion stations are key elements. In modern conversion stations large silicon thyristors are key devices. Energy storage in pumped-hydro installations can be supplemented by compressed air storage. Thermal plants can store energy in molten salts to provide continuous power for consumers. Battery technology is expensive at grid scale but is expanding. The possibility of carbon capture at power plants is discussed. Energy in this chapter is assumed to be electrical energy, with a large portion devoted to the electric grid.
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23

Eidaks, Jānis. RF Powering of Autonomous Wireless Sensor Network Nodes. RTU Press, 2022. http://dx.doi.org/10.7250/9789934227868.

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The Thesis is dedicated to the experimental study of RF powering of autonomous wireless sensor network nodes. The impact of powering signal properties on the RF-DC conversion efficiency and wireless power transfer performance is investigated. The impact of average input power level, peak-to-average power ratio (PAPR) level, different modulation types, spectral properties of signals, numbers of sub-carriers, and bandwidth are examined. The most popular RF-DC converter topologies and off-the-shelf solutions in the sub-GHz frequency range have been studied in detail.
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