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수치해석 기법을 이용한 발파전색재료 및 플러그 장치의 폭발압 저항 효과에 관한 연구
고영훈 ( Younghun Ko ),곽기석 ( Kiseok Kwak ),서승환 ( Seunghwan Seo ),정영준 ( Youngjun Jeong ),김식 ( Sik Kim ),정문경 ( Moonkyung Chung ) 대한화약발파공학회 2022 화약발파 Vol.40 No.2
Numerical simulation is the most widely used methods for evaluating blasting performance. This study, conducted the numerical analysis of shock chamber model to evaluate the pressure confine effect of the stemming material and plug device. The stemming effect was compared and evaluated with that of the STF-based stemming material currently under development and sand, which is a commonly used blast stemming material. Furthermore, to verify of enhancement the confine effect inside blast hole pressure, three types of stemming plugs were adopted for the numerical analysis. The numerical simulation results revealed that the STF-based stemming materials were superior to the general stemming material. Also, It is evaluated that the STF-based stemming and Plug system can not only prevent detonation gas from overflowing the borehole prematurely, but also prolong the action time and scope of detonation gas in the borehole effective.
대면적 대상물 변위계측을 위한 스테레오 카메라 3차원 DIC 시스템 기초설계 및 검증에 관한 연구
고영훈 ( Younghun Ko ),서승환 ( Seunghwan Seo ),임현성 ( Hyunsung Lim ),김태렬 ( Tailie Jin ),정문경 ( Moonkyung Chung ) 대한화약발파공학회 2020 화약발파 Vol.38 No.2
Digital Image Correlation is a well-established method for displacements, strains and shape measurements of engineering objects. Stereo-camera 3D Digital Image Correlation (3D-DIC) systems have been developed to match the specific requirements for measurements posed by material and mechanical industries. Although DIC method provides the capabilities of scaling a field-of-view(FOV), dimensions of Geotechnical structure objects in many cases are too big to be measured with DIC based on a single camera pair. It can be the most important issue with applying 3D DIC to the measurement of Geotechnical structures. In this paper, We were present stereo vision conditions in a 3D DIC system that can be measured for large FOV(30X20m) and high precisions(z-displacement 0.5mm) of the ground objects with Stereo-camera DIC systems.
김연수(Yeonsu Kim),고영훈(Younghun Ko),엄익채(Ieckchae Euom),김경백(Kyungbaek Kim) 한국정보보호학회 2020 정보보호학회논문지 Vol.30 No.4
인터넷 사용자가 폭발적으로 늘어나면서 웹을 이용한 공격이 증가했다. 뿐만 아니라 기존의 방어 기법들을 우회하기 위해 공격 패턴이 다양해졌다. 전통적인 웹 방화벽은 알져지지 않은 패턴의 공격을 탐지하기 어렵다. 따라서 인공지능으로 비정상을 탐지하는 방식이 대안으로 연구되고 있다. 특히 공격에 악용되는 스크립트나 쿼리가 텍스트로 이루어져 있다는 이유로 자연어 처리 기법을 적용하는 시도가 일어나고 있다. 하지만 스크립트나 쿼리는 미등록 단어(Unknown word)가 다량 발생하기 때문에 자연어 처리와는 다른 방식의 접근이 필요하다. 본 논문에서는 BPE(Byte Pair Encoding)기법으로 웹 공격 페이로드에 자주 사용되는 토큰 집합을 추출하여 임베딩 벡터를 학습시키고, 주의 메커니즘 기반의 Bi-GRU 신경망으로 토큰의 순서와 중요도를 학습하여 웹 공격을 분류하는 모델을 제안한다. 주요 웹 공격인 SQL 삽입 공격, 크로스 사이트 스크립팅, 명령 삽입 공격에 대하여 분류 평가 결과 약 0.9990의 정확도를 얻었으며, 기존 연구에서 제안한 모델의 성능을 상회하는 결과를 도출하였다. As the number of Internet users exploded, attacks on the web increased. In addition, the attack patterns have been diversified to bypass existing defense techniques. Traditional web firewalls are difficult to detect attacks of unknown patterns.Therefore, the method of detecting abnormal behavior by artificial intelligence has been studied as an alternative. Specifically, attempts have been made to apply natural language processing techniques because the type of script or query being exploited consists of text. However, because there are many unknown words in scripts and queries, natural language processing requires a different approach. In this paper, we propose a new classification model which uses byte pair encoding (BPE) technology to learn the embedding vector, that is often used for web attack payloads, and uses an attention mechanism-based Bi-GRU neural network to extract a set of tokens that learn their order and importance. For major web attacks such as SQL injection, cross-site scripting, and command injection attacks, the accuracy of the proposed classification method is about 0.9990 and its accuracy outperforms the model suggested in the previous study.
지하공간개발에서 뮤오그래피 탐사기술의 적용성에 관한 연구
서승환 ( Seunghwan Seo ),임현성 ( Hyunsung Lim ),고영훈 ( Younghun Ko ),곽기석 ( Kiseok Kwak ),정문경 ( Moonkyung Chung ) 대한화약발파공학회 2021 화약발파 Vol.39 No.4
Recently, the frequent occurrence of ground subsidence in urban areas has caused increasing anxiety in residents and incurred significant social costs. Among the causes of ground subsidence, the rupture of old water and sewer pipes not only halts the operation of the buried pipes, but also leads to ground and water pollution problems. However, because most pipes are buried after construction and cannot be seen with the naked eye, the importance of maintenance has underestimated compared to other structures. In recent years, integrated physical exploration has been applied to the maintenance of underground pipes and structures. Currently, to investigate the internal conditions and vulnerable portions of the ground, consolidated physical surveys are executed. Consolidated physical surveys are analysis techniques that obtain various material data and add existing data using multiple physical surveys. Generally, in geotechnical engineering, consolidated physical surveys including electrical and surface wave surveys are adopted. However, it is difficult to investigate time-based changes in under ground using these surveys. In contrast, surveys using cosmic-ray muons have been used to scan the inner parts of nuclear reactors with penetration technology. Surveys using muons enable real-time observation without the influence of vibration or electricity. Such surveys have great potential for available technology because of their ability to investigate density distributions without requiring as much labor. In this paper, survey technologies using cosmic ray muons are introduced, and the possibilities of applying such technologies as new physical survey technologies for underground structures are suggested.