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In this paper, two new Strongly Coupled Magnetic Resonance (SCMR) systems are presented for misalignment study. The efficiency versus azimuth rotation is examined. The analysis is performed using simulations and the results are validated by measurement.
In this paper, the efficiency of different novel misalignment insensitive SCMR systems is examined. The analysis is performed using simulation models. The results are validated with measurements. Also, a new misalignment insensitive SCMR topology that can be printed is also proposed.
An efficient wireless power transfer (WPT) of strongly coupled magnetic resonance (SCMR) with loops is shown here. This paper shows an optimal 3D loop design for SCMR systems, that is insensitive to misalignment, and exhibits higher efficiency than typical SCMR devices.
The wireless powering efficiency of traditional Strongly Coupled Magnetic Resonance (SCMR) systems is highly sensitive to the alignment between the transmitter and receiver elements; an issue that has limited their applicability in practical wireless power transfer systems. This paper proposes a novel set of SCMR-based topologies that are insensitive to misalignment and isotropic while providing large...
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