A globally optimal superconducting magnet coil design procedure based on the Minimum Stored Energy (MSE) current density map is outlined. The method has the ability to arrange coils in a manner that generates a strong and homogeneous axial magnetic field over a predefined region, and ensures the stray field external to the assembly and peak magnetic field at the wires are in acceptable ranges. The outlined strategy of allocating coils within a given domain suggests that coils should be placed around the perimeter of the domain with adjacent coils possessing alternating winding directions for optimum performance. The underlying current density maps from which the coils themselves are derived are unique, and optimized to possess minimal store...
International audienceThe Low Temperature Superconducting (LTS) coils are designed to produce strong...
Advancement in a cryogen-free superconducting magnet is addressed in this paper. In the proposed lab...
The emphasis of this work is on the optimal design of MRI magnets with both superconducting coils an...
n optimal current density map is crucial in magnet design to provide the initial values within searc...
The field in coil-dominated superconducting magnets can be maximized by optimizing the coil shape. I...
The use of the minimum stored energy current density map-based methodology of designing closed-bore ...
This paper presents a topology optimization-based method for optimally designing magnets. Compared t...
In the design of superconducting accelerator magnets, the shape of the coil cross section is mainly ...
A novel method for the design of open configuration magnets for Magnetic Resonance Imaging (MRI) has...
This article discusses the optimum layout of coils of a superconducting magnet system for magnetic d...
Besides applications in magnetic resonance imaging (MRI) and particle accelerators, superconductors ...
2006-2007 > Academic research: refereed > Refereed conference paperVersion of RecordPublishe
In high-resolution nuclear magnetic resonance (NMR-) spectroscopy superconducting coils are used to ...
Abstract—We present a method for the optimal design of su-perconducting magnet systems for magnetic ...
In this paper, an effective method to design the superconducting magnet for 1.5 T dedicated extremit...
International audienceThe Low Temperature Superconducting (LTS) coils are designed to produce strong...
Advancement in a cryogen-free superconducting magnet is addressed in this paper. In the proposed lab...
The emphasis of this work is on the optimal design of MRI magnets with both superconducting coils an...
n optimal current density map is crucial in magnet design to provide the initial values within searc...
The field in coil-dominated superconducting magnets can be maximized by optimizing the coil shape. I...
The use of the minimum stored energy current density map-based methodology of designing closed-bore ...
This paper presents a topology optimization-based method for optimally designing magnets. Compared t...
In the design of superconducting accelerator magnets, the shape of the coil cross section is mainly ...
A novel method for the design of open configuration magnets for Magnetic Resonance Imaging (MRI) has...
This article discusses the optimum layout of coils of a superconducting magnet system for magnetic d...
Besides applications in magnetic resonance imaging (MRI) and particle accelerators, superconductors ...
2006-2007 > Academic research: refereed > Refereed conference paperVersion of RecordPublishe
In high-resolution nuclear magnetic resonance (NMR-) spectroscopy superconducting coils are used to ...
Abstract—We present a method for the optimal design of su-perconducting magnet systems for magnetic ...
In this paper, an effective method to design the superconducting magnet for 1.5 T dedicated extremit...
International audienceThe Low Temperature Superconducting (LTS) coils are designed to produce strong...
Advancement in a cryogen-free superconducting magnet is addressed in this paper. In the proposed lab...
The emphasis of this work is on the optimal design of MRI magnets with both superconducting coils an...