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Analysis of double stub tuner control stability in a many element phased array antenna with strong cross-coupling

机译:具有强交叉耦合的许多元件相控阵天线中的双托调谐器控制稳定性分析

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Active stub tuning with a fast ferrite tuner (FFT) allows for the system to respond dynamically to changes in the plasma impedance such as during the L-H transition or edge localized modes (ELMs), and has greatly increased the effectiveness of fusion ion cyclotron range of frequency systems. A high power waveguide double-stub tuner is under development for use with the Alcator C-Mod lower hybrid current drive (LHCD) system. Exact impedance matching with a double-stub is possible for a single radiating element under most load conditions, with the reflection coefficient reduced from Γ to Γ~2 in the "forbidden region." The relative phase shift between adjacent columns of a LHCD antenna is critical for control of the launched n_(||) spectrum. Adding a double-stub tuning network will perturb the phase of the forward wave particularly if the unmatched reflection coefficient is high. This effect can be compensated by adjusting the phase of the low power microwave drive for each klystron amplifier. Cross-coupling of the reflected power between columns of the launcher must also be considered. The problem is simulated by cascading a scattering matrix for the plasma provided by a linear coupling model with the measured launcher scattering matrix and that of the FFTs. The solution is advanced in an iterative manner similar to the time-dependent behavior of the real system. System performance is presented under a range of edge density conditions from under-dense to over-dense and a range of launched n_(||). *This work supported by US DoE cooperative agreement DE-FC02-99ER54512.
机译:活性存根调谐具有快速铁氧体调谐器(FFT)允许系统响应动态地在等离子体阻抗的变化,如LH转变或边缘本地化模式(榆树)中,并大大增加了融合离子回旋范围的有效性频率系统。一种高功率波导的双短线调谐器正在开发用于与Alcator C-国防部下混合电流驱动(LHCD)系统中使用。具有双存根精确阻抗匹配是可能的最负载条件下的单个辐射元件,与所述反射系数在从Γ减少到Γ〜2“禁止区域”。一个LHCD天线的相邻列之间的相对相移是用于发起N_(||)光谱的控制是至关重要的。添加双存根调谐网络将扰乱前进波特别是如果不匹配的反射系数高的相位。这种效果可通过调节低功率微波驱动的相位对于每个速调管放大器来补偿。发射的列之间的反射功率的交叉耦合,也必须考虑。该问题通过级联用于通过与所测量的发射散射矩阵的线性耦合模型和该FFT的所提供的等离子体的散射矩阵模拟。将该溶液以类似于实际系统的依赖于时间的行为以迭代的方式前进。系统的性能在一定范围的边缘密度的条件呈现由下密过度密集和一系列推出N_(||)的。 *这项工作由美国能源部合作协议DE-FC02-99ER54512支持。

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