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Development of V-band Doppler reflectometer based on frequency steering phased array antenna

Seong-Heon Seo, Boseong Kim, K D Lee, Hyunho Wi, Sung Ho Yoon, Sung Joon Yoon, Hee Sung Yoon, Junhee Lee, Changoo Park2025年5月Plasma Physics and Controlled FusionIF 2.2出版社

KSTAR Doppler reflectometer (DR) is designed based on frequency steering phased array antenna (FSPAA) operating in X-mode over the full V-band (50–75 GHz). In the FSPAA system, the microwave radiation angle varies as a function of frequency, allowing rapid changes in the radiation angle without mechanical movement. This is a very attractive advantage in fusion reactor environments where the concept of maintenance-free is important. However, FSPAA has limitations in microwave radiation in the broadside direction due to the open-stopband problem. In this paper, various types of series feeds are developed to suppress open-stopband and their performance is tested based on computer simulations. Directional coupling feed shows the best performance. Two prototype FSPAAs consisting of 8 antenna elements with directional coupling feed networks have been manufactured using electroforming technology. The performance of the manufactured FSPAAs are experimentally measured. Since microwaves are radiated with uniform power over an angular range of for a frequency sweep of 3 GHz, the angular scan is repeated 9 times over the entire V-band. A prototype KSTAR DR based on a bistatic antenna configuration is assembled using the two FSPAAs. The performance of the prototype DR is tested using a rotating corrugated aluminum wheel in the laboratory.

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kstar低精度(概要文一致)

AIによる論文要約

V バンド周波数走査フェーズドアレーアンテナに基づく Doppler 反射計の開発
JAこの論文は、Doppler 反射計やフェーズドアレーアンテナの設計に興味のある研究者や技術者に役立つでしょう。学生にとっても、核融合プラズマ診断の基礎を理解する良い機会となります。#DopplerReflectometer #PhasedArrayAntenna #FusionPlasma
LLM向け: {'Title': 'Development of V-band Doppler reflectometer based on frequency steeri…

この論文は、KSTAR の Doppler 反射計(DR)が、50-75 GHz の V バンド全域でX モードで動作するフェーズドアレーアンテナ(FSPAA)に基づいて設計されたことを説明しています。FSPAA は周波数に応じて放射角が変化するため、機械的な動きなしに迅速な角度変化が可能です。これは、メンテナンスフリーが重要な核融合炉環境に適しています。

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