首页> 外文会议>第六届IEEE国际电力电子与运动控制会议(2009 IEEE 6th International Power Electronics and Motion Control Conference-ECCE Asia论文集 >Multi-output Power Supply with Series Voltage Compensation Capability for Magnetic Resonance Imaging System
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Multi-output Power Supply with Series Voltage Compensation Capability for Magnetic Resonance Imaging System

机译:具有串联电压补偿功能的磁共振成像系统多输出电源

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摘要

In Magnetic Resonance Imaging system, the most powerful device is gradient driver, which is also one of the key components to realize fast imaging with high quality. To meet the requirements of high-end MRI products, the power rating of the gradient driver increase from several hundred-kVA to 1MVA and even higher in the future. Commonly the gradient driver applies full bridge cascade technology and needs a lot isolated DC source with high power capability. To provide solution to this requirement, several technology platforms have been developed. This paper presents one of the most attractive options. In the proposed power supply structure, an AC pre-regulator and a multi-winding transformer are combined together with diode rectifiers to provide multiple isolated DC outputs. The AC pre-regulator compensates the utility voltage variation by injecting voltage to the input line through a series transformer, and that make the multi-winding transformer get a stable input. With this solution, the DC outputs voltage is only determined by the transformer leakage inductance and load current. Compared with high frequency DC-DC conversion methods, this scheme does not need high frequency magnetic devices and capacitors, which are difficult to build and high cost for high power application. The switching devices (IGBTs) in this option can also operate at a much lower frequency (several kHz) to reduce the switching loss, and lower switching frequency also benefit the device selection. Beside that the rectifiers applied at the secondaries of the multi-winding transformer operate at line frequency and that benefits the device selection and cost too. Here in this paper, the control algorithm of the power supply is presented and discussed. Both its self-performance and co-operation with the amplifier are evaluated with Saber simulation. The results indicate the attractiveness of the proposed scheme.
机译:在磁共振成像系统中,功能最强大的设备是梯度驱动器,它也是实现高质量快速成像的关键组件之一。为了满足高端MRI产品的要求,梯度驱动器的额定功率将从几百kVA增大到1MVA,并且在将来甚至更高。通常,梯度驱动器采用全桥级联技术,并且需要大量具有高功率能力的隔离直流电源。为了提供对此要求的解决方案,已经开发了几种技术平台。本文提出了最有吸引力的选择之一。在提出的电源结构中,将交流预调节器和多绕组变压器与二极管整流器组合在一起,以提供多个隔离的直流输出。交流预调节器通过通过串联变压器向输入线注入电压来补偿市电电压变化,从而使多绕组变压器获得稳定的输入。通过这种解决方案,直流输出电压仅由变压器漏感和负载电流决定。与高频DC-DC转换方法相比,该方案不需要高频磁性器件和电容器,而高频磁性器件和电容器难以制造并且对于高功率应用而言成本较高。此选件中的开关器件(IGBT)也可以在低得多的频率(几个kHz)下工作,以减少开关损耗,而较低的开关频率也有利于器件的选择。此外,应用于多绕组变压器次级的整流器以线路频率运行,这也有利于设备选择和成本。本文在此提出并讨论了电源的控制算法。它的自我性能以及与放大器的协作都可以通过Sabre仿真进行评估。结果表明了该方案的吸引力。

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