CHOSUN

단일 조사 이중 X-선 영상획득용 새로운 검출기 모듈에 관한 연구

Metadata Downloads
Author(s)
여화연
Issued Date
2009
Abstract
Single exposure dual X-ray imaging can be used to separate soft and dense-material images for medical and industrial applications. This study keep focusing baggage inspection system(BIS) specifically.
New detector modules for single exposure dual X-ray imaging are consisted of low energy detector (LED) and high energy detector (HED).
So this study has carried out simulation and experiment for new detector modules that LED was coupled with Lanex Regular scintillator and HED were coupled with Lanex fast B scintillator considered in this study.
First, the optimized thickness of copper filter coupled HED to separate low energy and high energy was simulated by the given X-ray energy (140 kVp, 1 mA) using Monte Carlo simulation codes, MCNPX. So as a result of simulation, the copper filter thickness is 0.7 mm.
For the design of PIN photodiode, ATLAS device simulation tool was used. 16 channels PIN photodiode of 1.5 mm x 3.2 mm for Dual X-ray imaging detector was fabricated in the process of ETRI. And its dark current and quantum efficiency, terminal capacitance were measured.
It was proven that the Lanex Fast B coupled HED were a sufficient candidate to replace the CsI(Tl) commerced in dual X-ray system, since these give a strong signal, overcoming system noise.
Finally dual X-ray image was acquired through correction of the LED X-ray Image and the HED X-ray Image.
Alternative Title
A Study on New Detector Module for Single Exposure Dual X-ray Imaging
Alternative Author(s)
Yeo Hwa Yeon
Affiliation
일반대학원 원자력공학과
Department
일반대학원 원자력공학과
Advisor
정운관
Awarded Date
2009-02
Table Of Contents
목 차
표목차 ---------------------------------------- ⅲ

그림목차 -------------------------------------- ⅳ

Abstract -------------------------------------- ⅵ

제1장 개요 ------------------------------------- 1
제1절 연구배경 및 목적 ----------------------------- 1
제2절 연구내용 및 범위 ----------------------------- 3

제2장 Dual Mode 검출기 모듈의 설계 ------------- 4
제1절 X-ray 스펙트럼 (X-ray spectrum) ------------- 4
제2절 Dual Mode 검출기 및 방사선적 특성 ------------ 7
제3절 Dual Mode 검출기 모듈의 최적화 설계 --------- 15
1. LED 및 HED 최적화 설계 ------------------------------- 15
2. PIN형 포토다이오드(Photodiode)의 설계 ---------------- 21
3. 신호처리 장치의 최적화 설계 -------------------------- 28

제3장 Dual Mode 검출기 모듈의 제작 및 평가 ---- 31
제1절 Dual Mode 검출기 모듈의 제작 ---------------- 31
1. 포토다이오드 제작 및 실험 ---------------------------- 31

제2절 포토다이오드의 성능 평가 -------------------- 34
1. I-V 측정실험 ----------------------------------------- 34
2. Quantum Efficiency 측정 ------------------------------ 35
제3절 LED 및 HED 모듈 제작 및 실험 ---------------- 38
제4절 LED 및 HED 성능 평가 ------------------------ 39
제4장 실험 환경 구축 ------------------------------- 41
제1절 X-ray 선원 및 검출기 모듈 ----------------- 41
1. X-ray 선원 ------------------------------------------ 41
2. X-ray scanner---------------------------------- 43
제2절 Scan 구동 시스템 및 시스템 set-up 소프트웨어 45
1. Scan 구동 시스템 ------------------------------------ 45
2. 시스템 set-up 소프트웨어 ---------------------------- 46
제5장 X-ray 반응 실험 및 X-ray 영상 실험 ------- 48
제1절 X-ray 반응 실험 ---------------------------- 48
1. 엑스레이 반응 실험 (X-ray respinse test) ------------ 48
2. LED 및 HED의 X-ray Uniformity 실험 ------------------ 49
3. LED 및 HED의 X-ray Linearity 및 Signal 실험 --------- 50
4. LED 및 HED의 X-ray Signal Ratio 실험 ---------------- 51
5. LED 및 HED의 X-ray Z-MAP 실험 ----------------------- 53
제2절 X-ray 영상 실험 ---------------------------- 56
1. 실험 방법 및 조건 ----------------------------------- 56
2. 실험 결과 ------------------------------------------- 58
제6장 결론 및 고찰 -------------------------------- 59

참고문헌
Degree
Doctor
Publisher
조선대학교
Citation
여화연. (2009). 단일 조사 이중 X-선 영상획득용 새로운 검출기 모듈에 관한 연구.
Type
Dissertation
URI
https://oak.chosun.ac.kr/handle/2020.oak/8167
http://chosun.dcollection.net/common/orgView/200000237524
Appears in Collections:
General Graduate School > 4. Theses(Ph.D)
Authorize & License
  • AuthorizeOpen
  • Embargo2009-02-04
Files in This Item:

Items in Repository are protected by copyright, with all rights reserved, unless otherwise indicated.