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PLASMA IMPEDANCE PROBE ANALYSIS WITH A FINITE DIFFERENCE TIME DOMAIN SIMULATION

机译:等离子体阻抗探头分析具有有限差分时域模拟

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Sweeping frequency plasma impedance probes have been flown on recent sounding rocket missions and also on the International Space Station. These plasma impedance probes have been used to 1) Characterize the low latitude ionosphere. 2) Study the descending layers in the E-region. 3) Measure the electron temperature, density, and electron-neutral collision frequency within mid-latitude spread F and 4) Measure the ambient plasma properties around the international Space Station. The impedance of the electrically short monopole, dipole or patch antenna used in these missions is determined by generating sweeps of radio frequency voltages between 200 kHz and 20 MHz as the spacecraft travels through the ionospheric layers and measuring the current at the probe input terminals. The impedance data is analyzed using a Plasma Fluid Finite Difference Time Domain (PF-FDTD) model developed at the Utah State University. In this study, the results of the PF-FDTD simulations are compared with the measured data obtained from the Sudden Atomic Layer (SAL) mission, which was launched as a part of the COQUI II campaign from Puerto Rico on 19th February, 1998 at 2009 LT. The parameters that were to be determined were the electron plasma frequency, electron gyro frequency and the ambient magnetic field in the altitude range of 90 - 115 Kms.
机译:扫频等离子体阻抗探头已经飞到最近的探空火箭任务,也对国际空间站。这些等离子体阻抗探针已被用于1)表征低纬度电离层。 2)研究在E-区域下降的层。 3)测量电子温度,密度和中纬度扩展F和4内的电子中性碰撞频率)测量周围的国际空间站环境等离子体性质。在这些任务中使用的电短路单极,双极或贴片天线的阻抗是由作为航天器行进通过电离层产生200千赫和20MHz之间的射频电压的扫描和测量在该探针的输入端子的电流来确定。阻抗数据使用等离子流体时域有限差分在犹他州立大学开发(PF-FDTD)模型进行分析。在这项研究中,PF-FDTD仿真结果与来自突发原子层(SAL)的任务获得的测量数据,这是在2009年推出,来自波多黎各2月19日在科基II运动,1998年的部分比较LT。其将被确定的参数是电子等离子体频率,电子回旋频率和90的高度范围的环境磁场 - 115公里。

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