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Development of impedance matching technologies for ICRF antenna arrays

机译:开发用于ICRF天线阵列的阻抗匹配技术

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摘要

All high-power ion cyclotron range of frequency (ICRF) heating systems include devices for matching the input impedance of the antenna array to the generator output impedance. For most types of antennas used, the input impedance is strongly time dependent on timescales as rapid as 10(-4) s, while the radio frequency (RF) generators used are capable of producing full power only into a stationary load impedance. Hence, the dynamic response of the matching method is of great practical importance. In this paper, world-wide developments in this field over the past decade are reviewed. These techniques may be divided into several classes. The edge plasma parameters that determine the antenna array's input impedance may be controlled to maintain a fixed load impedance. The frequency of the RF source can be feedback controlled to compensate for changes in the edge plasma conditions, or fast variable tuning elements in the transmission line between the generator output and the antenna input connections can provide the necessary time-varying impedance transformation. In 'lossy passive schemes', reflected power due to the time-varying impedance of the antenna array is diverted to a dummy load. Each of these techniques can be applied to a pre-existing antenna system. If a new antenna is to be designed, recent advances allow the antenna array to have the intrinsic property of presenting a constant load to the feeding transmission lines despite the varying load seen by each antenna in the array. [References: 41]
机译:所有大功率离子回旋加速器频率范围(ICRF)加热系统均包括用于使天线阵列的输入阻抗与发生器输出阻抗匹配的设备。对于大多数使用的天线类型,输入阻抗在很大程度上取决于时间尺度,其时标高达10(-4)s,而所使用的射频(RF)发生器只能将全功率产生为固定负载阻抗。因此,匹配方法的动态响应具有重要的现实意义。本文回顾了过去十年中该领域的全球发展。这些技术可以分为几类。可以控制确定天线阵列输入阻抗的边缘等离子体参数,以维持固定的负载阻抗。可以对RF源的频率进行反馈控制,以补偿边缘等离子条件的变化,或者在发生器输出和天线输入连接之间的传输线中的快速可变调谐元件可以提供必要的时变阻抗变换。在“有损无源方案”中,由于天线阵列的时变阻抗而产生的反射功率被转移到虚拟负载。这些技术中的每一个都可以应用于预先存在的天线系统。如果要设计新的天线,则尽管阵列中每个天线看到的负载都在变化,但最近的进步使天线阵列具有向馈送传输线施加恒定负载的固有特性。 [参考:41]

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