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Simulation of a Multi-Level Resonant Flying-Capacitor Converter above Resonant Frequency to Overcome Its Voltage Regulation Issue

机译:仿真谐振频率以上谐振频率的多级谐振电容器转换器克服其电压调节问题

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This paper presents a Flying-Capacitor converter above its resonant frequency considering zero-voltage switching (ZVS) realization and voltage regulation issue due to wide input voltage and output power variations. A new multi-level Flying-Capacitor (FC) dc/dc converter is candidate among the other proposed topologies with lower power device count and soft switching characteristics that results in lower electromagnetic interference and switching losses. ZVS operation under the continuous conduction mode (CCM) operation has achieved undeniable benefits in switching losses and therefore a higher efficiency. In the MOSFET-based converters, the ZVS operation causes lower switching losses in contrary to the wide used zero current switching (ZCS) approaches under the discontinuous conduction mode (DCM). However, in this topology a natural ZCS operation of the diodes under the CCM condition is occurred which impels even to higher efficiency, too. In addition, output voltage regulation has been clearly revealed and when wide input voltage and output power variations are applied.
机译:本文介绍了其谐振频率上方的飞行电容转换器,考虑到零电压切换(ZVS)实现,由于宽输入电压和输出功率变化而导致的零电压切换(ZVS)实现和电压调节问题。新的多级飞行电容(FC)DC / DC转换器是其他提出的拓扑结构中的候选,具有较低的功率器件计数和软切换特性,导致电磁干扰和切换损耗较低。在连续导通模式(CCM)操作下的ZVS操作在开关损耗方面取得了不可否认的益处,因此效率更高。在基于MOSFET的转换器中,ZVS操作导致较低的开关损耗与不连续的传导模式(DCM)下的宽采使用的零电流切换(ZCS)接近相反。然而,在这种拓扑结构中,发生了在CCM条件下的二极管的天然ZCS运行,这也普及更高的效率。此外,已经清楚地显示出输出电压调节,并且当施加宽输入电压和输出功率变化时。

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