Abstract In this paper, we present the design of spatial filtering magnetic metasurfaces to overcome the efficiency decay arising in misaligned resonant inductive Wireless Power Transfer systems. At first, we describe the analytical framework for the control of currents flowing on a finite-size metasurface, avoiding classical truncation effects on the periphery and opportunely manipulating, at the same time, the spatial magnetic field distribution produced by the closely placed RF driving coil. In order to validate the theoretical approach, we conceive a numerical test case consisting of a WPT system operating at 12 MHz. By performing accurate full-wave simulations, we prove that inducing a uniform current in the metasurface results in a mo...
Magnetic resonance imaging (MRI) is the cornerstone diagnostics technique for medicine, biology, and...
The adoption of wireless power transfer (WPT) is affected by limitation in power transfer distance, ...
The efficiency of near field magnetic resonant wireless power transfer (WPT) systems depends on the ...
In this paper, we introduce the adoption of a magnetic metasurface whose response is opportunely con...
We present a compact, magnetically dispersive engineered surface for resonant inductive wireless pow...
In this article, we introduce a general analytical procedure to unambiguously characterize a metasur...
The potential of wireless power transfer (WPT) has attracted considerable interest for various resea...
In this letter, we develop an accurate and effective analytical framework to arbitrarily manipulate ...
Wireless power transfer (WPT) has lately seen significant innovation and development; consequently, ...
In this paper, an analytic circuital approach to manipulate the response of magnetic metasurfaces is...
In this paper, we investigate the electromagnetic response of a Huygens' metasurface (HMS) embedded ...
Magnetically coupled resonant (MCR) wireless power transfer (WPT) is a promising technology, which h...
Abstract As a unique group of advanced artificial materials, metamaterials have found many interesti...
This paper proposes and implements an accurate position detection method in wireless power transfer ...
Recently, the utilization of magnetic resonant coupling (MRC) mechanism for wireless power transfer ...
Magnetic resonance imaging (MRI) is the cornerstone diagnostics technique for medicine, biology, and...
The adoption of wireless power transfer (WPT) is affected by limitation in power transfer distance, ...
The efficiency of near field magnetic resonant wireless power transfer (WPT) systems depends on the ...
In this paper, we introduce the adoption of a magnetic metasurface whose response is opportunely con...
We present a compact, magnetically dispersive engineered surface for resonant inductive wireless pow...
In this article, we introduce a general analytical procedure to unambiguously characterize a metasur...
The potential of wireless power transfer (WPT) has attracted considerable interest for various resea...
In this letter, we develop an accurate and effective analytical framework to arbitrarily manipulate ...
Wireless power transfer (WPT) has lately seen significant innovation and development; consequently, ...
In this paper, an analytic circuital approach to manipulate the response of magnetic metasurfaces is...
In this paper, we investigate the electromagnetic response of a Huygens' metasurface (HMS) embedded ...
Magnetically coupled resonant (MCR) wireless power transfer (WPT) is a promising technology, which h...
Abstract As a unique group of advanced artificial materials, metamaterials have found many interesti...
This paper proposes and implements an accurate position detection method in wireless power transfer ...
Recently, the utilization of magnetic resonant coupling (MRC) mechanism for wireless power transfer ...
Magnetic resonance imaging (MRI) is the cornerstone diagnostics technique for medicine, biology, and...
The adoption of wireless power transfer (WPT) is affected by limitation in power transfer distance, ...
The efficiency of near field magnetic resonant wireless power transfer (WPT) systems depends on the ...