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Electron density profile measurement using Ka-band microwave impulse radar reflectometer on LHD

T. Tokuzawa, K. Kawahata, K. Tanaka, the LHD Experimental Group2006年被引用 10Nuclear FusionIF 3出版社

We have installed a ten channel Ka-band ultrashort pulsed radar reflectometer system in the Large Helical Device. The main objective of this diagnostic is to provide reliable information about the edge electron density profile. The time-of-flight measurement technique is used for the delay time measurement of the reflected pulses from each cut-off layer in the plasma, in order to avoid a mixture of spurious radiation such as electron cyclotron emission and undesired reflection such as another polarization wave mode. As for the signal detection section, a filter bank system is applied; the reflected pulse shape is affected by the bandwidth of band pass filter; thus, the optimum bandwidth must be found experimentally. The reconstructed electron density profile is obtained using an Abel inversion method from the profile of the delay time as a function of the probing frequency. In density modulation experiments, the static island width can be estimated from the temporal change of the density profile.

日本語訳

我々は、大型ヘリカル装置に10チャンネルKaバンド超短パルスレーダー反射計システムを設置した。この診断装置の主な目的は、エッジ電子密度分布に関する信頼性の高い情報を提供することである。飛行時間測定法は、プラズマ内の各カットオフ層からの反射パルスの遅延時間測定に用いられ、電子サイクロトロン放射のような不要放射や、別の偏波モードによる不要反射の混入を避けるために採用されている。信号検出部に関しては、フィルターバンク方式が適用されている。反射パルス波形はバンドパスフィルタの帯域幅の影響を受けるため、最適な帯域幅を実験的に決定する必要がある。電子密度分布は、探査周波数の関数としての遅延時間プロファイルからアーベル変換法を用いて再構成される。密度変調実験においては、密度分布の時間変化から磁気島の静的幅を推定することができる。

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