Figure 2 from Air gap fringing flux reduction in a
This paper presents a detailed analysis to evaluate the performance changes of a high frequency inductor used in a solar inverter by new arrangement
This paper presents a detailed analysis to evaluate the performance changes of a high frequency inductor used in a solar inverter by new arrangement
In this paper, Simulation & Hardware development of High frequency Inverter with 90KHz frequency with Pulse Width Modulation
This paper presents a detailed analysis to evaluate the performance changes of a high frequency inductor used in a solar inverter by new arrangement scheme of the air gap locations.
The paper presents an effective design and implementation of High Frequency Inverter for WPT applications in MATLAB/Simulink at 1KW,230V and 90KHz frequency with open and closed
There are two center-pole material cores, and air-gap distribution arrangement in the magnetic components. The saturation current value, magnetic flux density, flux fringing, and power loss
In this paper, Simulation & Hardware development of High frequency Inverter with 90KHz frequency with Pulse Width Modulation switching strategy is presented.
Each module comprises a high-frequency inverter and rectifier, and two matching networks that enable effective power transfer by providing voltage and/or current gain and reactive
The main objective of this paper is to summarize the current topologies and related technologies of high-frequency inverters for WPT systems and to study the key issues in high
This high performance is achieved through a combination of high-frequency operation, innovative matching network design, and enhancements in coupling plate design that alleviate the risk of
This article presents a novel approach using a resonant inverter operating at 6.78 MHz for a robust capacitive power transfer (CPT) system with a small air gap.
The main objective of this paper is to summarize the current topologies and related technologies of high-frequency inverters for WPT systems and to study the key issues in high
This article presents a novel approach using a resonant inverter operating at 6.78 MHz for a robust capacitive power transfer (CPT) system with a small air gap.
A common feature of all applications for wbicb the contactless energy transmission is used up to now is the relatively small air gap (in a range of several millimetres) between the primary and
High-power large air-gap capacitive wireless power transfer (WPT) systems require paralleling either the semiconductor devices in their high-frequency inverters
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