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Design of the 3.7 GHz, 1 kW CW solid state driver for LHCD system of the SST-1 tokamak

机译:SST-1 Tokamak的LHCD系统的3.7 GHz,1 kW CW固态驱动器设计

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Advances in solid state device technologies have seen its use foray into areas such as microwave heating and powering the RF cavities of an accelerator. This paper explores the possibility of use of a solid state source/driver for current drive systems of tokamaks. The design of a modular solid state source to be used as a driver for klystrons in the LHCD system of SST-1 tokamak is presented. It comprises of solid state power amplifier (SSPA) units, driven by voltage controlled oscillator (VCO) and pre-driver (gain) amplifier. The paper discusses about the design methodology and simulation of these individual components. The component and system level computer simulation based on behavioural and file based model was performed using AWR Microwave Office (MWO) software. The linear and non-linear EM analysis of individual components have been carried out to ascertain its performance. The designed VCO delivers an output power of 20.2 dBm and phase noise of -91.64 dB/Hz (100 KHz offset) at 3.7 GHz. The pre-driver stage (gain amplifier) provides a large signal gain of 15.7 dB and return loss of -14 dB at 3.7 GHz. The individual power amplifier draws a continuous wave (CW) output power of 45.2 dBm for an input power of 35 dBm and efficiency of 56.68%. The system simulation results exhibit around 1 kW of output power in ideal conditions.
机译:固态设备技术的进步已经看到它使用Foray进入微波加热和供电加速器的RF空腔等区域。本文探讨了使用用于托卡马克的当前驱动系统的固态源/驱动器的可能性。提出了模块化固态源作为SST-1 Tokamak的LHCD系统中用于Klystrons的驱动器的设计。它包括由电压控制振荡器(VCO)和预驱动器(GAIN)放大器驱动的固态功率放大器(SSPA)单元。本文讨论了这些单个组件的设计方法和模拟。使用AWR微波办公室(MWO)软件执行基于行为和文件模型的组件和系统级计算机仿真。已经进行了单个组件的线性和非线性EM分析以确定其性能。设计的VCO在3.7GHz提供了20.2 dBm和-91.64dB / Hz(100kHz偏移)的相位噪声的输出功率。预驱动程序级(增益放大器)提供了15.7dB的大信号增益,并在3.7GHz时返回-14 dB的返回损耗。各个功率放大器绘制连续波(CW)输出功率为45.2dBm,输入功率为35 dBm,效率为56.68%。系统仿真结果在理想条件下展示了大约1kW的输出功率。

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