Vanderbilt University Institute of Imaging Science, Vanderbilt University Medical Center, Nashville, TN, USA.
Department of Radiology and Radiological Sciences, Vanderbilt University Medical Center, Nashville, TN, USA.
Magn Reson Med. 2021 Dec;86(6):3382-3390. doi: 10.1002/mrm.28934. Epub 2021 Jul 19.
A ratio adjustable power splitter (RAPS) circuit was recently proposed for add-on RF shimming and array-compressed parallel transmission. Here we propose a new RAPS circuit design based on off-the-shelf components for improved performance and manufacturability.
The original RAPS used a pair of home-built Wilkinson splitter and hybrid coupler connected by a pair of connectorized coaxial cables. Here we propose a new hybrid-pair RAPS (or HP-RAPS) circuit that replaces the home-built circuits with two commercially available hybrid couplers and replaces connectorized cables with interchangeable microstrip lines. We derive the relation between the desired splitting ratio and the required phase shifts for HP-RAPS and investigate how to generate arbitrary splitting ratios using paired meandering and straight lines. Several HP-RAPSs with different splitting ratios were fabricated and tested on the workbench and MRI experiments.
The splitting ratio of an HP-RAPS circuit has a tan or cot dependence on the meandering line's additional length compared to the straight line. The fabricated HP-RAPSs exhibit accurate splitting ratios as expected (<4% deviations) and generate transmit fields that well agree with predicted fields. They also demonstrated a low insertion loss of 0.33 dB, high output isolation of -26 dB, and acceptable impedance matching of -16 dB.
A novel HP-RAPS circuit was developed and implemented. It is easy-to-fabricate/reproduce with minimal expertise. It also preserves the features of the original RAPS circuit (ratio-adjustable, small footprint, etc.) with lower insertion loss.
最近提出了一种比率可调功率分配器(RAPS)电路,用于附加射频匀场和阵列压缩并行传输。这里我们提出了一种新的基于现成组件的 RAPS 电路设计,以提高性能和可制造性。
原始的 RAPS 使用一对自制的威尔金森功率分配器和混合耦合器通过一对带连接器的同轴电缆连接。这里我们提出了一种新的混合对 RAPS(或 HP-RAPS)电路,它用两个商用混合耦合器代替了自制电路,并将连接器电缆替换为可互换的微带线。我们推导出了 HP-RAPS 的所需分割比和所需相位偏移之间的关系,并研究了如何使用配对的曲折线和直线生成任意分割比。在工作台和 MRI 实验上制作并测试了几个具有不同分割比的 HP-RAPS。
与直线相比,HP-RAPS 电路的分割比与曲折线的附加长度呈正切或余切关系。所制作的 HP-RAPS 表现出预期的精确分割比(<4%的偏差),并产生与预测场很好吻合的发射场。它们还表现出低插入损耗为 0.33 dB,高输出隔离度为-26 dB,和可接受的阻抗匹配为-16 dB。
开发并实现了一种新型的 HP-RAPS 电路。它易于制造/复制,只需最少的专业知识。它还保留了原始 RAPS 电路的特性(可调节的比率、小的占用空间等),同时具有更低的插入损耗。