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Planarni simetrični šestofazni induktor sa spregnutim fazama za primene u DC/DC konvertorima / Plannar symmetric six-phase coupled inductor for application in DC/DC convertersLečić Nikola 05 April 2016 (has links)
<p>Tokom poslednje decenije efikasnost DC/DC konvertora, brzina odziva i snaga<br />koju mogu da isporuče ka potrošaču postali su značajan faktor prilikom<br />konstruisanja i izbora ovih kola. U mnogim istraživanjima je potvrđeno da<br />korišćenje višefaznih topologija, uzajamno sprezanje faza i simetrija faza<br />unutar kola igraju značajnu ulogu u unapređenju navedenih karakteristika DC/DC konvertora.<br />U ovoj disertaciji je predstavljen novi simetrični dizajn višefaznih<br />spregnutih induktora kod kojih svi namotaji dele jedno, zajedničko, feritno<br />jezgro. Projektovane strukture su analizirane u laboratorijskim uslovima u<br />frenkvencijskom opsegu od 50 kHz do 40 MHz, a merni rezultati su potvrđeni<br />simulacijama u specijalizovanom softveru. Uzorci su testirani u radnim<br />uslovima pomoću šestofaznog DC/DC buck konvertora. Rezultati testova su<br />pokazali da primena konstruisanih induktorskih struktura dovodi do<br />poboljšanja brzine odziva i porasta efikasnosti test kola.</p> / <p>In the last decade efficiency of DC/DC converters, transient response and<br />delivered power, become important factor in development and selecting<br />these circuits. Numerous researches confirm benefits of using multiphase<br />topologies, mutual coupling of phases and symmetry of phases in the circuit<br />of DC/DC converters.<br />In this dissertation, new symmetric designs of multiphase coupled inductors<br />placed in the same core have been presented. Designed structures have<br />been tested in laboratory conditions in frequency range from 50 kHz to 40<br />MHz, and results have been confirmed by simulations in specialized<br />software. Testing of samples in operating conditions have been performed<br />with six-phase buck converter circuit. These experiments confirm that<br />developed inductors improve transient response and efficiency of test circuit.</p>
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Ionization Influence on the Dynamics of Simple Organic MoleculesAkiyama, Tomoko January 2023 (has links)
This licentiate thesis is devoted to the investigation of how bonding in simple organic molecules are affected by X-ray beam irradiation. The investigation targets molecules with three carbons as their main-chain structure. The stability of the bonds under ionization are simulated using the SIESTA package. SIESTA is a simulation package that provides molecular dynamics simulations based on density functional theory within the Born-Oppenheimer approximation. The aim of this study is to understand statistically the damaging process and selectivity among different types of bond. As the first targets, 4 hydrocarbons are investigated. They are propane, propene, propyne and propadiene, which have different combinations of single, double and triple bonds as their main-chain structures. Depending on the combinations, the structures can be either symmetric around the central atom or not. The structure of the symmetric molecules propane and propadiene are stable until charge +3. In contrast, the asymmetric molecules propene and propyne, the main-chain bonds show a tendency towards a more similar bond-distance as the level of ionization increases. In addition, hydrogens relocation occurs in propene, leading to a symmetric structure. Secondly, the bond fluctuations are investigated among 4 types of three-carbon molecules which have functional parts. Alcohol and carboxyl groups molecules show the stable bond integrities at charging 0 to +2. On the other hand, the carbon-carbon bonds in molecules with acetyl and ketone groups are broken by ionization. Comparing the 8 kinds of bond breaking processes in these molecules, this statistical study gives an insight to organic molecules bonding systems.
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