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Comparative studies of various types of transmission lines in the frequency range 70 GHz 1 THz for ITER ECE diagnostic

机译:频率范围70 GHz 1 THz中各种传输线的比较研究,拍卖ECE诊断

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摘要

In ITER, an Electron Cyclotron Emission (ECE) diagnostic is planned to measure the electron temperature by measuring the cyclotron radiation in the frequency range of 70-1000 GHz. The cyclotron radiation is usually of low power and needs to be transported with low attenuation over a long distance of ~ 43 m, through a suitable transmission system. Pertaining to long distance, the transmission system will consist of straight waveguide sections, miter bends and waveguide joints. Low power, low loss transmission in a broadband frequency range over long distance makes the design of the transmission system challenging. To arrive at a suitable transmission system, attenuation measurements of three types of transmission lines (TLs) have been performed i.e. circular smooth walled, corrugated and dielectric coated waveguide. A polarizing Michelson interferometer based on Martin-Puplett design has been used to measure the spectrum from waveguide set ups and liquid nitrogen has been used as the black body radiation source. The measured spectrum shows atmospheric water vapour absorption lines in all types of TLs. The preliminary measurement shows that the attenuation of smooth walled waveguide is found to be comparable to corrugated waveguide up to ~ 600GHz and better than corrugated waveguide above 600 GHz for the chosen set of experimental conditions. Further, to avoid water absorption lines, a smooth walled TL is evacuated up to rough vacuum (~10-2mbar) and it was observed that the attenuation is decreased and overall transmission is improved.
机译:在ITER中,计划通过测量70-1000 GHz频率范围内的回旋辐射来测量电子温度以测量电子温度。通过合适的传动系统,回旋辐射通常具有低功率,并且需要在长距离〜43m的长距离下进行低衰减。与长距离有关,传动系统将由直波导部分,斜切弯曲和波导接头组成。低功耗,低频频率范围在长距离频率范围内,使传动系统的设计具有挑战性。为了达到合适的传动系统,已经进行了三种类型的传输线(TLS)的衰减测量,即圆形光滑壁,波纹和介电涂覆的波导。基于Martin-Puplett设计的偏振迈克尔逊干涉仪已被用于测量波导设定的光谱,并且液氮已被用作黑体辐射源。测量光谱显示了所有类型的TL中的大气水蒸气吸收线。初步测量表明,光滑壁波导的衰减被发现与波纹波导高达约600GHz的衰减,并且优于600GHz以上的瓦楞波导,用于所选择的一组实验条件。此外,为了避免吸水管线,将光滑的壁T1抽空至粗糙的真空(〜10-2Mbar),观察到衰减减小并且整体透射性得到改善。

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