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ITER 离子回旋射频源的宽带混合组合器设计。

A wideband hybrid combiner design for ITER ion cyclotron radio frequency source.

机构信息

ITER-India, Institute for Plasma Research, Gandhinagar, Gujarat 382428, India.

出版信息

Rev Sci Instrum. 2023 Feb 1;94(2):024701. doi: 10.1063/5.0132176.

DOI:10.1063/5.0132176
PMID:36859058
Abstract

The high-power radio frequency source for ion cyclotron heating and current drive of ITER tokamak consists of two identical 1.5 MW amplifier chains. These two chains will be combined using a wideband hybrid combiner with adequate coupling flatness, phase balance, return loss, and isolation response to generate 2.5 MW radio frequency (RF) power in the frequency range of 36 to 60 MHz. As part of the in-house development program at ITER-India, a wideband hybrid combiner with coupling flatness and return loss/isolation better than 0.4 and -25 dB, respectively, has been simulated. A detailed analysis for matched load performance of the hybrid combiner for the output power level of 3 MW as well as mismatched load performance for load power of 2.5 MW with voltage standing wave ratio 2.0 and 3.0 MW with voltage standing wave ratio 1.5 has been performed. Based on the simulation, a prototype model was in-house fabricated, and the simulated results have been validated experimentally in splitter and combiner mode. To evaluate performance as a combiner, two solid-state power amplifiers were combined through the prototype combiner for input power levels up to 2.5 kW on matched and mismatched load conditions. In the power splitter experiment, the RF power level up to 1.5 MW from a single amplifier chain was split through the prototype combiner to be dumped in the high power loads in the frequency range of 36 to 60 MHz.

摘要

ITER 托卡马克的离子回旋加热和电流驱动的高功率射频源由两个相同的 1.5MW 放大器链组成。这两个链将使用宽带混合合路器进行组合,该合路器具有足够的耦合平坦度、相位平衡、回波损耗和隔离响应,以在 36 至 60MHz 的频率范围内产生 2.5MW 的射频(RF)功率。作为 ITER-India 内部开发计划的一部分,已经对具有优于 0.4 和-25dB 的耦合平坦度和回波损耗/隔离度的宽带混合合路器进行了模拟。对输出功率为 3MW 的混合合路器的匹配负载性能以及失配负载性能进行了详细分析,失配负载功率为 2.5MW 时的电压驻波比为 2.0,失配负载功率为 3.0MW 时的电压驻波比为 1.5。基于仿真,内部制作了一个原型模型,并在分路器和合路器模式下对仿真结果进行了实验验证。为了评估作为合路器的性能,两个固态功率放大器通过原型合路器进行组合,在匹配和失配负载条件下输入功率高达 2.5kW。在功率分配器实验中,通过原型合路器将单个放大器链的 RF 功率水平高达 1.5MW 分配到 36 至 60MHz 频率范围内的高功率负载中。

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