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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Minimax current density gradient coils: Analysis of coil performance and heating
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Minimax current density gradient coils: Analysis of coil performance and heating

机译:Minimax电流密度梯度线圈:线圈性能和加热分析

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摘要

Standard gradient coils are designed by minimizing the inductance or resistance for an acceptable level of gradient field nonlinearity. Recently, a new method was proposed to minimize the maximum value of the current density in a coil additionally. The stated aim of that method was to increase the minimum wire spacing and to reduce the peak temperature in a coil for fixed efficiency. These claims are tested in this study with experimental measurements of magnetic field and temperature as well as simulations of the performance of many coils. Experimental results show a 90% increase in minimum wire spacing and 40% reduction in peak temperature for equal coil efficiency and field linearity. Simulations of many more coils indicate increase in minimum wire spacing of between 50 and 340% for the coils studied here. This method is shown to be able to increase coil efficiency when constrained by minimum wire spacing rather than switching times or total power dissipation. This increase in efficiency could be used to increase gradient strength, duty cycle, or buildability. Magn Reson Med, 2012.
机译:通过将电感或电阻最小化来设计标准梯度线圈,以实现可接受水平的梯度场非线性。最近,提出了一种新的方法来额外地最小化线圈中的电流密度的最大值。该方法的既定目标是增加最小导线间距并降低线圈中的峰值温度,以实现固定效率。在这项研究中,通过对磁场和温度的实验测量以及对许多线圈性能的仿真,对这些声明进行了测试。实验结果表明,最小线圈间距增加了90%,峰值温度降低了40%,以实现相同的线圈效率和磁场线性度。对更多线圈的仿真表明,此处研究的线圈的最小线间距增加了50%至340%。当受最小线间距而不是开关时间或总功耗限制时,该方法可以提高线圈效率。效率的提高可用于提高梯度强度,占空比或可建造性。 Magn Reson Med,2012年。

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