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Sooting 및 Non-Sooting 정상 확산 화염에서 생성되는 매연 입자의 특성에 대한 연구
최인철,이재복,황정호,Choi, In-Chul,Lee, Jae-Bok,Hwang, Jung-Ho 대한기계학회 2000 大韓機械學會論文集B Vol.24 No.7
Characteristics of carbon soot particles generated in diffusion flames were studied. Non-sooting and sooting normal diffusion flames using propane or ethylene as fuel were selected. In the flames, soot volume fraction was measured by a thermocouple, and primary particle diameter and cluster size were analyzed by TEM photographs. The characteristics of soot particles depended on flame(non-sooting or sooting) and fuel(propane or ethylene) type. Unlike the sooting diffusion flames, particle growth and oxidation processes were clearly observed in the non-sooting diffusion flames. In the sooting diffusion flames, soot particle size was slightly changed at the flame tip.
음성 인식 기술을 활용한 채점자 엄격도 반영 및 유창성 측정 타당성
최인철(Choi Inn-Chull) 한국외국어교육학회 2004 Foreign languages education Vol.11 No.2
Serious inherent problems with practicality, intra-rater and inter-rater reliability overshadow the known positive washback effects of performance assessment in language education. In particular, it has been welldocumented that inter-rater reliability poses a serious threat to overall test validity, since individual raters necessarily measure performance according to their own subjective severity criteria in language proficiency. However, language testing has witnessed a remarkable series of breakthroughs in performance assessment during the recent advent of the information era. One such breakthrough utilizes state-of-the-art automatic speech recognition (ASR) technology for oral proficiency interviews(OPI). Granting that current forms of ASR technologies may not produce results with the reliability needed to accommodate highstakes standardized test administration, they do offer aid in approaching the thorny issues of practicality and inherent human inter-rater subjectivity. Accordingly, this paper is intended to investigate the degree to which ASR-based OPI ratings match similar human-conducted OPI ratings by employing correlational analyses on the basis of degrees of rater severity. Furthermore, this paper attempts to explore a method of enhancing the robustness of ASR-based OPI ratings which capitalizes on suprasegmental information by measuring fluency based principally on the test-takers’ response time length.
중등영어교육 수행평가를 위한 음성인식기술기반 모의구술면접 모형
최인철(Choi Inn-Chull) 한국외국어교육학회 2005 Foreign languages education Vol.12 No.4
The deficiency of competent native English speaker raters and the inherent problem with intra-rater and inter-rater reliability of the oral proficiency interview (OPI) has precluded the full-fledged implementation of English performance testing, inevitably ushering in the computer- based oral proficiency interview (COPI) as its viable alternative with the help of automatic speech recognition (ASR). The plausibility and feasibility of implementing ASR-based COPI has recently been investigated with favorable results, which warrants more sophisticated research focusing on development of desirable test methods that will meet the rigorous criteria required by high-stakes language tests. In this respect, employing varied statistical methods as correlational, regression analyses, and ANOVA, the present study attempts to explore strengths and limitations of test method facets and to identify valid test methods to maximize the validity and reliability of ASR-based COPⅠ. Within the theoretical framework of communicative language components to be measured, the statistical findings reveal that some test methods prove to be more effective than others in producing COPI test results with better discriminability and reliability. The survey of students and teachers also suggest their favorable attitudes toward utilizing the COPI for in-class evaluation. Both findings strongly corroborates potential of the COPI in question as a valid performance testing tool to measure overall communicative competence. The current research is expected not only to shed light on advancement of performance testing, but also to serve the purpose of enhancing communicative English teaching.
나노압입시험법을 이용한 열처리 소재의 미소 변형 거동 평가
최인철 ( In-chul Choi ) 한국열처리공학회 2020 熱處理工學會誌 Vol.33 No.2
To improve the mechanical properties of most structural materials for industrial applications, the control of microstructure is essential by heat treatment process or plastic deformation process. Since the mechanical behavior of structural materials is significantly influenced by their microstructure, it is inevitably preceded to understand the relationship between microstructure and strengthening mechanisms of materials which can be easily changed by heat treatment. In this regard, the nanoindentation test is useful technique for analyzing the influence of the localized microstructural change on small-scale mechanical behavior of various structural materials. Here, the interesting studies performed on various heat-treated materials are reviewed with focus on micromechanical properties obtained by nanoindentation, which are reported in the available literature. (Received March 10, 2020; Revised March 16, 2020; Accepted March 20, 2020)