Electronic design and modeling of an integrated plasma impedance probe

M. Jayaram, M. E. Hamoui, C. Winstead, E. Spencer
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引用次数: 2

Abstract

This paper describes the electronic design of a plasma impedance probe under development for microsatellite applications. The designs primary innovation is the integration of matched analog-to-digital converters on a single chip for sampling the probe's current and voltage signals. A fast fourier transform (FFT) is performed by an off-chip FPGA to compute the probe's impedance. This provides a robust solution for determining the plasma impedance accurately. The use of matched ADCs decreases the instrument's sensitivity to imprecision and variation in the probe stimulus waveform and the FFT reduces sensitivity to transient spikes that proved disruptive in previous instruments. The major analog errors and parametric variations affecting the PIP instrument and its effect on the accuracy and precision of the impedance measurement are also studied.
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集成等离子体阻抗探头的电子设计与建模
本文介绍了正在研制的用于微卫星的等离子体阻抗探头的电子设计。该设计的主要创新是将匹配的模数转换器集成在单个芯片上,用于采样探头的电流和电压信号。通过片外FPGA进行快速傅里叶变换(FFT)来计算探头的阻抗。这为准确测定等离子体阻抗提供了一个可靠的解决方案。匹配adc的使用降低了仪器对不精确和探头刺激波形变化的灵敏度,FFT降低了对先前仪器中被证明具有破坏性的瞬态尖峰的灵敏度。研究了影响PIP仪器的主要模拟误差和参数变化及其对阻抗测量精度和精度的影响。
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