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Analysis and Optimization of Switched-Capacitor DC–DC Converters

IEEE Transactions on Power Electronics · 2008 · Vol. 23(2) · pp. 841–851
Michael D. SeemanSeth R. Sanders

Abstract

Analysis methods are developed that fully determine a switched-capacitor (SC) dc-dc converter's steady-state performance through evaluation of its output impedance. This analysis method has been verified through simulation and experimentation. The simple formulation developed permits optimization of the capacitor sizes to meet a constraint such as a total capacitance or total energy storage limit, and also permits optimization of the switch sizes subject to constraints on total switch conductances or total switch volt-ampere (V-A) products. These optimizations then permit comparison among several switched-capacitor topologies, and comparisons of SC converters with conventional magnetic-based dc-dc converter circuits, in the context of various application settings. Significantly, the performance (based on conduction loss) of a ladder-type converter is found to be superior to that of a conventional magnetic-based converter for medium to high conversion ratios.

Advanced DC-DC ConvertersAdvanced Battery Technologies ResearchInnovative Energy Harvesting TechnologiesSwitched capacitorConvertersCapacitorCapacitanceContext (archaeology)Electronic engineeringElectronic circuitControl theory (sociology)Topology (electrical circuits)Computer science
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