Simulation verification of Langmuir-probe's pulse response current estimation algorithm and it's interval optimization algorithms

碩士 === 國立中央大學 === 光機電工程研究所 === 106 === The purpose of this paper is to improve the traditional pulsed langmuir probe. By data simulation, we studied the influence of the contamination layer on the probe, and develop an algorithm to correct the current measurement accuracy and enhance the anti-noise...

Full description

Bibliographic Details
Main Authors: YU-JUNG CHI, 紀佑融
Other Authors: 江士標
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/4dk678
id ndltd-TW-106NCU05651012
record_format oai_dc
spelling ndltd-TW-106NCU056510122019-11-14T05:35:42Z http://ndltd.ncl.edu.tw/handle/4dk678 Simulation verification of Langmuir-probe's pulse response current estimation algorithm and it's interval optimization algorithms 蘭摩爾探針脈衝響應電流估測及間隔時間最佳化演算法之模擬驗證 YU-JUNG CHI 紀佑融 碩士 國立中央大學 光機電工程研究所 106 The purpose of this paper is to improve the traditional pulsed langmuir probe. By data simulation, we studied the influence of the contamination layer on the probe, and develop an algorithm to correct the current measurement accuracy and enhance the anti-noise capability. In order to improve the spatial resolution, this paper attempts to measure the I-V curve with the minimum number of pulses, we find the representative scanning voltage point to calculate the electron temperature and density. Finally, we studied the characteristics of the contamination discharge curve, and develop an algorithm to calculate the capacitance discharge time and optimize the pulse interval time. 江士標 2018 學位論文 ; thesis 73 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立中央大學 === 光機電工程研究所 === 106 === The purpose of this paper is to improve the traditional pulsed langmuir probe. By data simulation, we studied the influence of the contamination layer on the probe, and develop an algorithm to correct the current measurement accuracy and enhance the anti-noise capability. In order to improve the spatial resolution, this paper attempts to measure the I-V curve with the minimum number of pulses, we find the representative scanning voltage point to calculate the electron temperature and density. Finally, we studied the characteristics of the contamination discharge curve, and develop an algorithm to calculate the capacitance discharge time and optimize the pulse interval time.
author2 江士標
author_facet 江士標
YU-JUNG CHI
紀佑融
author YU-JUNG CHI
紀佑融
spellingShingle YU-JUNG CHI
紀佑融
Simulation verification of Langmuir-probe's pulse response current estimation algorithm and it's interval optimization algorithms
author_sort YU-JUNG CHI
title Simulation verification of Langmuir-probe's pulse response current estimation algorithm and it's interval optimization algorithms
title_short Simulation verification of Langmuir-probe's pulse response current estimation algorithm and it's interval optimization algorithms
title_full Simulation verification of Langmuir-probe's pulse response current estimation algorithm and it's interval optimization algorithms
title_fullStr Simulation verification of Langmuir-probe's pulse response current estimation algorithm and it's interval optimization algorithms
title_full_unstemmed Simulation verification of Langmuir-probe's pulse response current estimation algorithm and it's interval optimization algorithms
title_sort simulation verification of langmuir-probe's pulse response current estimation algorithm and it's interval optimization algorithms
publishDate 2018
url http://ndltd.ncl.edu.tw/handle/4dk678
work_keys_str_mv AT yujungchi simulationverificationoflangmuirprobespulseresponsecurrentestimationalgorithmanditsintervaloptimizationalgorithms
AT jìyòuróng simulationverificationoflangmuirprobespulseresponsecurrentestimationalgorithmanditsintervaloptimizationalgorithms
AT yujungchi lánmóěrtànzhēnmàichōngxiǎngyīngdiànliúgūcèjíjiāngéshíjiānzuìjiāhuàyǎnsuànfǎzhīmónǐyànzhèng
AT jìyòuróng lánmóěrtànzhēnmàichōngxiǎngyīngdiànliúgūcèjíjiāngéshíjiānzuìjiāhuàyǎnsuànfǎzhīmónǐyànzhèng
_version_ 1719290633614524416